Static Holographic Boundary Theory (SHBT) — Synthetic Ghost Seed Propulsion & Metric Control Digital Twin
Multi-physics digital twin simulator for synthetic ghost seed propulsion, multi-seed artificial gravity, and gravitational optics under Static Holographic Boundary Theory (SHBT), now integrating a coherent graser-discharged 178m2Hf nuclear isomer power supply transferred from sys1own/shbt-warp and sys1own/shbt-power.
When local boundary information processing exceeds the holographic ceiling N_limit, a topological overflow DeltaN = N_local - N_limit produces an effective ghost-seed mass:
M_seed = alpha_seed * DeltaN , alpha_seed = d1 * m_P / N_total = 26 m_P / e^33
= 1.3258316e-51 M_sun/bit (canonical branch (26, 8, 312), 512-bit MPFR)
Sustaining the baseline M_seed = 1e-6 M_sun requires DeltaN_0 = 7.542426e44 bits and dissipates a continuous, non-sheddable Landauer entropy debt:
P_debt = (M_seed / M_sun) * 906 GW = 906.00 kW
Power is supplied by a 1,800-module LANR plant delivering 999.054 kW_net (555.03 W/module, operating floor N_min = 1633, N+167 active reserve, 33.804% dual-stage TEG efficiency, yielding +93.054 kW net surplus margin).
The LANR continuous tier resolves the irreducible Landauer floor but bounds discrete bit-stepping to 50,517 bits/step. To break the thrust-to-weight bottleneck, a dual-power dispatch topology couples the LANR grid to a pulsed 178m2Hf graser isomer battery:
- Isomer core: 376.99 kg monolithic single-crystal 178m2HfB2 (ρ_E = 1.3263 TJ/kg, E_x = 2.446 MeV, t½ = 31.0 y, K^π = 16⁺, K-forbiddenness ν = 8) storing 500.0 TJ extractable.
- Resonant gateway trigger: 40.0 keV coherent X-ray seed excites the 2.486 MeV gateway state (K^π = 8⁻, ν = 0) giving single-event gain G_isomer = 61.15.
- Borrmann cavity: ε_B = 0.985 anomalous transmission in the HfB2/CVD-diamond superlattice suppresses absorption 66.7× and preserves Mössbauer f_M ≥ 0.74 at T ≤ 21.13 K.
- 3-stage relativistic DEC: Compton forward recoil (η₁ = 26.4%) + pair-production induction (η₂ = 12.1%) + 16-grid retarding collection (η₃ = 7.3%) → η_conv = 45.8%, stepping the bus 15 kV → 400 kV DC and delivering up to 49.9449 TW net electrical at the 109.05 TW peak burst.
- PCSS optical crowbars: 320-segment SI-SiC/GaN bank collapses the bus in τ_quench ≤ 2.18 ns with 94.20% inductive recovery into SMES storage (segment dI/dt = 1.789e14 A/s ≤ 1.85e14 A/s, dV/dt = 3.64e12 V/s ≤ 4.20e13 V/s).
- Dynamic bit injection: ΔN(k) scales to 2.7114e13 bits/step at 50.518 kHz (1.3698e18 bits/s); a 10 s peak pulse injects 1.3698e19 bits against a horizon capacity of ~1.050e101 bits (ζ_congestion ≈ 1.30e-82 ≪ 1, back-reaction ‖Φ_back‖ ≈ 4.07e-27 kg·m⁻¹·s⁻¹).
Kinematic congestion wakes are cancelled by third-order momentum compensation enforcing |mu_comp - mu_0| <= 1e-12; propulsion executes via forward offset vectoring and discrete bit-stepping Delta N(k) = floor(DeltaP_net / P_bit); habitat gravity is synthesized by K-seed metric superposition g_mn = eta_mn + sum h_mn^(i) + I_mn (I_00 = +2.4189e-32, I_kk = -I_00/3), producing a non-rotational 9.80665 m/s^2 floor gravity with zero Coriolis distortion, audited via ADM lapse and Gram determinant bounds.
Synthetic optics span focal lengths from f0 = 169.30 m to f_max = 1692.99 m with Bessel J0^2 caustics and C <= 1e-10 coronagraph rejection. Relativistic causality is enforced by harmonic 2PN lightcone authorization Delta s^2 <= 0 and a sub-2.50 ns GaN current-shunt quench (tau <= 2.18 ns, 94.20% SiC inductive energy recovery). Active error correction executes as a Union-Find + Blossom MWPM TQEC decode of the 124-braid dark ledger (<= 45 ns, F_logical >= 0.999999). Chalcogenide GST routing layers self-heal under 27.9 mJ/cm^2 optical anneal pulses (> 99.9% conductivity recovery after >= 100 krad(Si)), hyper-dual UQ extracts exact Hessians with GUM S1/S2 Monte Carlo (N >= 1e7) delivering 3-sigma confidence bounds, and the LANR cold plate carries 3D Chaboche backstress across a Pd-Ir/Ti/CVD-Diamond/TLP-Bond/OFHC-Cu stack under a 4-term RPI boiling partition of the 906.00 kW debt load. Physical artifacts export directly via GDSII (8x8 InP/InGaAs, 50.0 um pitch), ISO 10303-21 STEP, and Touchstone S2P (Z0 = 50.12 +/- 0.80 ohm to 40 GHz).
╭────────────────────────────────────────────────────────────────────────────────────╮
│ SHBT-GHOST SYNTHETIC METRIC PROPULSION & GRAVITATIONAL WELL TOPOLOGY │
╰────────────────────────────────────────────────────────────────────────────────────╯
┌── [ 1. CONTINUOUS POWER BALANCE & COHERENT ISOMER BURST RAIL ] ────────────────────┐
│ │
│ ╭──────────────────────────╮ 999.054 kW DC @ 400V ╭────────────────────────────╮ │
│ │ 1,800-Module LANR Grid │─────────────────────►│ Continuous Housekeeping │ │
│ │ • 555.03 W net/cell │ │ Distribution Bus │ │
│ │ • N_min = 1,633 (N+167) │◄──┐ ╰─────────────┬──────────────╯ │
│ ╰──────────────────────────╯ │ +48.00 kW TEG │ │
│ │ Core Standby Heat ▼ │
│ ┌─────────────────────────┴──────────────────┐ ╭──────────────────────────╮ │
│ │ │ │ Landauer Entropy Debt │ │
│ ╭────┴──────────────────────────────────────╮ │ │ • 906.000 kW non-shed │ │
│ │ ¹⁷⁸ᵐ²Hf Nuclear Isomer Battery (500.0 TJ) │ │ │ • 312 Emitter Microcav. │ │
│ │ • 376.99 kg | 40.0 keV Seed Laser Trigger │ │ ╰──────────────────────────╯ │
│ │ • Borrmann Graser: G=61.15, ε_B=0.985 │ │ Net Surplus: +93.054 kW │
│ ╰──────────────────┬────────────────────────╯ └───────────────────────────────┘
│ │ Coherent γ-burst (T_op ≤ 21.13 K, Headroom ΔT ≥ 11.79 K) │
│ ▼ │
│ ╭──────────────────────────────────────────────────────────────────────────────╮ │
│ │ 3-Stage Relativistic DEC: η_conv = 45.8% (Compton 26.4% + Pair 12.1% + 7.3%) │ │
│ │ Variable 15 kV ➔ 400 kV DC Bus | Peak Electric Burst: 49.945 TW Net │ │
│ ╰──────────────────────────────────────────────────────────────────────────────╯ │
└───────────────────────────────────────────────────┬────────────────────────────────┘
│ High-Voltage Burst Injection
▼
┌── [ 2. DISCRETE HOLOGRAPHIC TRACTION & KINEMATIC WAKE COMPENSATION ] ──────────────┐
│ │
│ ╭──────────────────────────────────────────────────────────────────────────────╮ │
│ │ Discrete Bit-Stepping Propulsion Governor: ΔN(k) = ⌊ΔP_net / P_bit⌋ │ │
│ │ • Command Stepping Rate: 50.518 kHz | Energy per Bit: P_bit = 1.842 W/bit │ │
│ │ • Synthetic Ghost Seed Mass: M_seed = α_seed · ΔN │ │
│ │ Coupling: α_seed = 26 m_P / e³³ = 1.3258316×10⁻⁵¹ M_sun/bit │ │
│ ╰──────────────────────────────────────┬───────────────────────────────────────╯ │
│ │ │
│ ╭──────────────────────────────────────┴───────────────────────────────────────╮ │
│ │ 3rd-Order Kinematic Wake Compensation & Minimum-Jerk Flight Profile │ │
│ │ • Wake Cancellation Lagrangian: |μ_comp − μ_0| ≤ 10⁻¹² (Eigenvector Rigidity)│ │
│ │ • 5th-Order Trajectory Profile: s(τ) = 10τ³ − 15τ⁴ + 6τ⁵ (max |s″| = 5.7735) │ │
│ │ • Relative Positioning Sensitivity: Δr ≤ 0.084 nm (TMSV σ_r ≤ 0.144 pm/√Hz) │ │
│ ╰──────────────────────────────────────────────────────────────────────────────╯ │
└───────────────────────────────────────────────────┬────────────────────────────────┘
│ Synthesized Metric Bias
▼
┌── [ 3. 3+1 SPACETIME FOLIATION & MULTI-SEED METRIC SUPERPOSITION ] ────────────────┐
│ │
│ ╭──────────────────────────────────────────────────────────────────────────────╮ │
│ │ Conformal & Covariant Z4 (CCZ4) Numerical Relativity Solver │ │
│ │ • Gundlach Damping: κ₁ = 0.15, κ₂ = 0.0 | CFL = 0.25 (RK4 Integration) │ │
│ │ • ADM Shift Nulling: βⁱ ➔ 0 | Spacetime Lapse Lock: |det(g) + 1| ≤ 10⁻¹² │ │
│ │ • Constraint Violation Damping: ‖H‖ < 10⁻¹²² Holographic Noise Floor │ │
│ ╰──────────────────────────────────────┬───────────────────────────────────────╯ │
│ │ │
│ ╭──────────────────────────────────────┴───────────────────────────────────────╮ │
│ │ K-Seed Non-Linear Metric Superposition: g_mn = η_mn + ∑ h_mn^(i) + I_mn │ │
│ │ • Cross-Coupling Correction: I_00 = +2.4189×10⁻³², I_kk = -I_00 / 3 │ │
│ │ • Linear Superposition Radius: R_congestion = 2.954×10¹⁵ m │ │
│ │ • Habitat Artificial Gravity: Non-rotational 1g Floor (g_z = 9.80665 m/s²) │ │
│ ╰──────────────────────────────────────────────────────────────────────────────╯ │
└───────────────────────────────────────────────────┬────────────────────────────────┘
│ Real-Time Register Telemetry
▼
┌── [ 4. C11 MICROKERNEL HARDWARE CONTRACT & FAST OPTICAL INTERLOCK ] ───────────────┐
│ │
│ ╭──────────────────────────────────────────────────────────────────────────────╮ │
│ │ Freestanding C11 shbt-os Microkernel Contract (shbt_ghost_mmio_t @ 0x70000000│ │
│ │ • Cacheline 0 (0x00–0x3F): System control, status, debt ledgers, mass words │ │
│ │ • Cacheline 1 (0x40–0x7F): ADM lapse, shift, cryo telemetry, DEC bus meters │ │
│ │ • Relativistic Causal Gate (0x28–0x2C): Enforces 2PN Interval Δs²_2PN ≤ 0 │ │
│ ╰──────────────────────────────────────┬───────────────────────────────────────╯ │
│ │ │
│ ╭──────────────────────────────────────┴───────────────────────────────────────╮ │
│ │ Sub-2.18 ns PCSS Optical Crowbar Interlock (Hard Trip Limit ≤ 2.50 ns) │ │
│ │ • Photoconductive Switch Shunt: dI/dt ≤ 1.85×10¹⁴ A/s | dV/dt ≤ 4.20×10¹³ V/s│ │
│ │ • Inductive Energy Recovery: 94.20% routed via SiC crowbar into SMES storage │ │
│ ╰──────────────────────────────────────────────────────────────────────────────╯ │
╰────────────────────────────────────────────────────────────────────────────────────╯
| Phase | State code | Active source | Bus potential | Operational criteria |
|---|---|---|---|---|
| STANDBY_STASIS | 0x01 |
LANR grid (999.054 kW) | 15.0 kV pre-bias | Debt satisfied; core at 21.13 K; habitat gravity locked at 1.0 g |
| TRIGGER_ARMED | 0x02 |
LANR + seed pumping | 15.0 kV pre-bias | 40.0 keV X-ray synch locked; cryo at max; crowbars armed; TMSV verified |
| BURST_TRACTION | 0x04 |
LANR + Hf graser burst | 15.0 → 400.0 kV | Discharge active; ΔN(k) scales to 2.7114e13 bits/step |
| DEC_COOLDOWN | 0x08 |
LANR grid | 400.0 → 15.0 kV | Seed off; bus stepping down; two-phase He flush |
| EMERGENCY_QUENCH | 0x10 |
Crowbar shunt + SMES | ≤ 1.0 kV residual | PCSS fired (τ ≤ 2.18 ns); 94.20% recovery; drop to stasis |
| Regime | Gross isomer power | Net bus electrical | ΔN bits/step | Bit injection rate | Peak metric accel |
|---|---|---|---|---|---|
| Continuous LANR baseline | 1.150 MW | 93.054 kW | 50,517 | 2.5520e9 bits/s | 1.42e-6 m/s² |
| Isomer low-impulse burst | 10.000 GW | 4.579 GW | 2.4859e9 | 1.2558e14 bits/s | 6.98e-2 m/s² |
| Isomer nominal vectoring | 1.000 TW | 457.094 GW | 2.4815e11 | 1.2536e16 bits/s | 6.97 m/s² |
| Isomer peak metric burst | 109.050 TW | 49.944 TW | 2.7114e13 | 1.3698e18 bits/s | 7.61e2 m/s² |
| Subsystem | Material / architecture | Volume (m³) | Mass (kg) |
|---|---|---|---|
| Active isomer core | Monolithic 178m2HfB2 single crystal (ρ = 10.50 g/cm³) | 0.0359 | 376.99 |
| Diamond cavity matrix | CVD diamond substrate with acoustic pinning | 0.0185 | 65.12 |
| Relativistic DEC duct | 3-stage collectors: Be foils, W-Re converters, 16 grids | 0.4200 | 840.00 |
| Cryostat & cold plate | Ti-6Al-4V vacuum jacket, 5-layer plate, LHe plumbing | 0.2850 | 520.00 |
| Radiation shield envelope | 45 mm Pb + 120 mm 5% borated PE | 0.3450 | 1,884.88 |
| PCSS crowbars & busbars | 320 SI-SiC switches, MgB₂ leads, SMES recovery coil | 0.1120 | 230.00 |
| Metrology & avionics | Dual sapphire/aerogel TMSV stacks, C11 FPGA controller | 0.0950 | 180.00 |
| Total propulsion nacelle | Integrated flight assembly (ceiling ≤ 4,200.00 kg) | 1.3114 m³ | 4,096.99 kg |
Reserve margin: 103.01 kg (2.45%) beneath the 4,200.00 kg ceiling.
| Metric | Standalone LANR baseline | Dual LANR + ¹⁷⁸ᵐ²Hf graser battery | Improvement |
|---|---|---|---|
| Continuous housekeeping power | 999.054 kW (+93.054 kW surplus) | 999.054 kW (+93.054 kW surplus) | Baseline parity; debt sustained |
| Peak burst electrical power | 93.054 kW | 49.9449 TW @ 109.05 TW burst | +5.367e8× peak power |
| Bit stepping ΔN(k) | 50,517 bits/cycle | 2.7114e13 bits/cycle | +5.367e8× per 50.518 kHz step |
| Boundary injection rate | 2.5520e9 bits/s | 1.3698e18 bits/s | Relativistic metric gradients |
| Thrust-to-weight ratio | ≈1.45e-7 | > 77.6 (transient) | Micro-drift → high-impulse vectoring |
| Dynamic response bandwidth | 12.4 Hz (thermal ramp) | 50.518 kHz (optical gating) | ~4 orders of magnitude |
| Operating temperature | 300–550 K (hot cell) | 21.13 K (superlattice) | f_M ≥ 0.74 zero-phonon state |
| Emergency quench speed | 18.5 ms (electromechanical) | ≤ 2.18 ns (PCSS optical) | 8.48e6× faster |
| Inductive energy recovery | 0.00% (dumped) | 94.20% (SMES capture) | Surge energy recycled |
| Verified audit gates | 70 gates | 78 gates (GATE-BAT-01..08) | Full battery coverage |
The battery/metric hardware window shbt_ghost_mmio_t (kernel/include/shbt_ghost_mmio.h) upgrades the legacy 56-byte SHBT-MMIO-1 layout at 0x70000000 into a 128-byte, 64-byte-aligned, SECDED Hamming(72,64)-protected contract mapped for AVX-512 operations:
0x00 ─────────── Cacheline 0: command / control / telemetry ──────────
0x00 ctrl_status u32 dispatch state machine (0x01..0x10)
0x04 trigger_delay_ps u32 laser trigger sync delay
0x08 target_bits_step u64 commanded ΔN(k)
0x10 current_bits_step u64 actual ΔN(k) stepped
0x18 dec_bus_voltage_v f64 DEC bus 15 kV – 400 kV
0x20 gross_burst_power_w f64 instantaneous graser power
0x28 core_temp_kelvin f32 active core temperature
0x2C cold_plate_temp_k f32 cold plate interface
0x30 battery_soc_permille u16 isomer SoC (0–1000)
0x32 pcss_crowbar_arm u16 PCSS quench interlock arm bits
0x34 ecc_syndrome_c0 u32 SECDED syndrome, line 0
0x38 reserved_c0 u64 pad to 64 B
0x40 ─────────── Cacheline 1: metric invariants / safety ledger ──────
0x40 adm_lapse_alpha f64 lapse α = 1.0
0x48 det_g_error f64 |det(g) + 1| ≤ 1e-12
0x50 shift_norm_beta f64 ‖β^i‖ → 0
0x58 tmsv_squeezing_r f64 r = 2.50 (21.715 dB)
0x60 mu_comp_rigidity f64 |μ_comp − μ₀| ≤ 1e-12
0x68 dark_ledger_braids u32 braid invariant count (124)
0x6C quench_latency_ps u32 crowbar quench latency
0x70 ecc_syndrome_c1 u32 SECDED syndrome, line 1
0x74 reserved_c1[3] u32 pad to 128 B
Static assertions pin sizeof(shbt_ghost_mmio_t) == 128 and offsetof(..., adm_lapse_alpha) == 64; the real-time loop performs zero dynamic heap allocation.
shbt-ghost operates as the multi-seed gravity, propulsion, and fast metric-stabilization authority within the Static Holographic Boundary Theory (SHBT) digital twin network. The ecosystem establishes formal bidirectional technology transfers across nine specialized repositories:
╭──────────────────────────────────────────╮
│ [shbt-precision] │
│ Computational Math & Cosmology │
│ (512-bit MPFR / WZW Characters) │
╰────────────────────┬─────────────────────╯
│
┌─────────────────────────────────┼─────────────────────────────────┐
▼ ▼ ▼
╭───────────────────────────╮ ╭───────────────────────────╮ ╭───────────────────────────╮
│ [shbt-power] │ │ [shbt-cf] │ │ [shbt-qc] │
│ Commercial Fusion Grid │ │ 1,800-Module LANR Array │ │ Bare-Metal Microkernel & │
│ (8,750 MW p-11B Twin) │ │ & Thermal-Hydraulics │ │ Photonic Quantum Bus │
╰─────────────┬─────────────╯ ╰─────────────┬─────────────╯ ╰─────────────┬─────────────╯
│ │ │
└────────────────────────┬────────┴─────────────────────────────────┘
▼
╭───────────────────────────────────────────────────────────────────────────────────────────╮
│ SPECIALIZED VEHICLE TWINS │
│ │
│ • shbt-ghost : Reactionless Propulsion & Local Gravity Wells (3+1 CCZ4 / PCSS Crowbars) │
│ • shbt-recon : Macroscopic State Translocation Gateway (Stinespring V_macro / 504 Gbps) │
│ • shbt-sglt : Synthetic Gravitational Lensing Telescope (SE-L2 Swarm / TMSV Metrology) │
│ • shbt-warp : Holographic Warp Metric & 3+1D Flight Twin (ADM α=1.0 / 500 TJ Graser) │
╰──────────────────────────────────────────┬────────────────────────────────────────────────╯
│
▼
╭───────────────────────────────────────────────────────────────────────────────────────────╮
│ shbt-exotic │
│ MULTI-PROTOCOL SPACETIME ENGINEERING CO-SIMULATION BENCH │
│ │
│ • Cross-Protocol Field Coupling (Warp + Stasis + Translocation + Wells + Comms) │
│ • Global Energy Condition & Ford-Roman Quantum Inequality (QI) Dark-Ledger Auditing │
│ • Dynamic 5-Stage Multi-Technology Flight Director & Relativistic PDE Mesh Solvers │
╰───────────────────────────────────────────────────────────────────────────────────────────╯
| Repository | Domain Role & Platform Scope | Shared Invariants & Interface Contracts |
|---|---|---|
shbt-precision |
Computational Math & Cosmological Foundation Core | 512-bit MPFR numerics, canonical WZW (26, 8, 312), Δfr ≡ 0, Landauer debt Pdebt = 906.00 kW. |
shbt-power |
Commercial p-¹¹B Aneutronic Fusion Power Plant Twin | 8,750 MW fusion / 7,832.903 MW net export, 70-gate audit, closed-loop thermal ledger, 128-byte SHBT-MMIO-POWER. |
shbt-cf |
LANR Cold Fusion Reactor Workbench & Thermal-Hydraulics | 1,800-module LANR starter grid (999.054 kW net DC), dual-stage CoSb3/ZrNiSn TEG, Kapitza resistance ΔTK = 3.546 K. |
shbt-qc |
Photonic Quantum Computer Twin & C11 Microkernel | Bare-metal C11 shbt-os microkernel, base 56-byte SHBT-MMIO-1 at 0x70000000, SECDED Hamming(72,64) ECC, AVX-512 interlocks. |
shbt-ghost |
Ghost Seed Reactionless Propulsion & Metric Stabilization | Sub-2.5 ns PCSS crowbars, 94.20% SiC inductive recovery, 3+1 CCZ4/ADM stabilization (βi → 0, |det(g)+1| ≤ 10-12). |
shbt-recon |
Macroscopic State Translocation & Gateway Twin | Macroscopic Stinespring dilation (Vunifiedmacro), dark ledger ηD = 23/33, 128-byte C-ABI DMA streaming, 78-gate audit. |
shbt-sglt |
Synthetic Gravitational Lensing Telescope (SE-L2) Stack | 2PN relativistic beam optics, TMSV heterodyne metrology (r = 2.50, 21.715 dB), 5th-order minimum-jerk flight profiles. |
shbt-exotic |
Multi-Protocol Spacetime Engineering Co-Simulation | Cross-protocol metric coupling (all 6 phenomena), Ford-Roman QI dark-ledger auditing, Heegaard-Floer boundary relabeling. |
shbt-warp |
Holographic Warp Drive Digital Twin & 3+1D ADM Engine | Alcubierre metric foliation (α = 1.0, γij = δij), 500 TJ ¹⁷⁸ᵐ²Hf graser battery (109 TW burst), 128-gate audit, 8 Z3 proofs. |
The following table details the bidirectional technology-transfer contracts between shbt-ghost and each ecosystem peer:
| Repository | Domain Role | Inter-Repository Integration with shbt-ghost |
|---|---|---|
sys1own/shbt-ghost |
Ghost Seed Propulsion & Metric Twin | Canonical repository. Simulates topological mass generation (M_seed = alpha_seed * DeltaN), reactionless traction vectoring, 1g artificial gravity synthesis, 3+1 CCZ4 numerical spacetime foliation, sub-2.50 ns PCSS / GaN quench protection, and 94.20% SiC energy recovery. |
sys1own/shbt-exotic |
Boundary CFT Foundations & Dark Ledger | Upstream authority for Boundary Conformal Field Theory state vectors, Heegaard-Floer symplectic boundary relabeling (Sp(2g, Z)), and Kojima entropy invariance (Ent = 0, Delta S_A = 0). Supplies the mass coupling constant alpha_seed = 1.3258316e-51 M_sun/bit, linear superposition equations, eigenvector rigidity (` |
sys1own/shbt-precision |
Arbitrary-Precision Math & Cosmology | Supplies the canonical WZW affine boundary branch (26, 8, 312) with integer center lifts (I_l, I_q) = (6, 13), vanishing framing defect Delta_fr = 0, and the 2,901,360-module dark Weil pairing (S_dark, T_dark, M_dark = I_2901360). Supplies 512-bit arbitrary-precision floating-point arithmetic (rug/MPFR, 492-bit mantissa) and computes the exact Landauer entropy debt baseline P_debt = 906.00 kW. |
sys1own/shbt-sglt |
SGLT Telescope & Relativistic Optics | Co-developed optical and formation-flight suite. Supplies two-mode squeezed vacuum (TMSV) laser interferometry (r = 2.50, 21.715 dB, sigma_r <= 0.144 pm/sqrt(Hz)), 5th-order minimum-jerk kinematics (max s'' = 5.7735), and PINN wave-optics deconvolution. In return, shbt-ghost provides multi-seed metric superposition, Gundlach-damped CCZ4 numerical relativity, reactionless traction drive logic, and closed-loop C6 coronagraph controllers (C <= 1e-10). |
sys1own/shbt-qc |
Bare-Metal Microkernel & Photonic QC | Canonical authority for the freestanding C11 shbt-os microkernel runtime, the normative 56-byte SHBT-MMIO-1 register map at 0x70000000, the 2,112-byte .stinespring_frame SRAM layout, SECDED Hamming(72,64) ECC scrubbing, and AVX-512 real-time Givens vector remapping. Supplies InP/InGaAs photonic integrated circuit (PIC) PDK rules and Touchstone S2P RF interposer export standards. |
sys1own/shbt-cf |
Cold Fusion Authority & Power Ledger | Canonical power source for shbt-ghost. Specifies the 1,800-module LANR starter grid generating 999.054 kW_net (555.03 W DC/cell, 33.804% TEG efficiency) to continuously balance the 906.00 kW Landauer debt with +93.054 kW operational margin. Supplies McNabb-Foster deuterium kinetics (McnabbFosterSolver) and two-phase Eulerian-Eulerian boiling models with Chaboche backstress cold-plate thermal fatigue analysis. shbt-ghost returns sub-2.50 ns PCSS optical interlocks and 94.20% SiC recovery crowbars. |
sys1own/shbt-recon |
Macroscopic State Tracking & Causal GNC | Supplies macroscopic Stinespring dilation (V_macro_unified over N ~ 10^20 to 10^28 particles) partitioning states into active residual (eta_A = 10/33, 640 B) and dark ledger (eta_D = 23/33, 1,472 B, 124 braids). Supplies 2PN harmonic metric formulations and causal lightcone authorization (Delta s^2_2PN <= 0) mapped to SHBT-MMIO-1 (0x28–0x2C), as well as high-throughput lock-free POSIX SPSC shared-memory telemetry rings and 128-byte dual-cacheline C-ABI alignment conventions. |
sys1own/shbt-power |
Master Fusion Twin & Systems Integration | Master commercial aneutronic fusion platform (p-11B Graser power plant, 8,750 MW fusion / 7,832.903 MW net export). Directly integrates shbt-ghost's sub-2.50 ns PCSS trigger logic, 94.20% SiC inductive recovery crowbars, and real-time ADM 3+1 metric stabilization routines (beta^i -> 0, ` |
sys1own/shbt-warp |
Holographic Warp Drive & Spacetime Engine | Direct logic transfer. shbt-ghost transfers its 3+1 hyperbolic CCZ4 numerical relativity solver with Gundlach constraint damping (κ1 = 0.15, κ2 = 0.0) and sub-2.5 ns PCSS optical crowbar interlock (94.20% SiC inductive recovery) into shbt-warp. In return, shbt-warp provides smooth Alcubierre shape functions fSHBT(r) and coordinate stress-energy tensors. |
- Mass-Congestion Topology & Superposition (
shbt-exotic->ghost-core-engine,ghost-multiseed-gravity): Linearized perturbationsg_mn = eta_mn + sum h_mn^(i) + I_mnand the 512-bit interference correction tensorI_mnmaintain metric stability against the1e-122holographic noise floor, guaranteeing strict sub-1e-12deviation withinR_congestion = 2.954e15 m. - WZW Modular Partitions & Arbitrary Precision (
shbt-precision->ghost-core-engine): Affine characters forSU(2)_26,SU(3)_8, andSO(10)_312(c_vis = 1325/154,c_parent = 351/8); dynamic 512-bit MPFR boundary closureZ(tau) = q^{-c/24} prod_n (1-q^n)^{-1}; dark Weil kernels(S_dark, T_dark, M_dark = I_2901360)over(Z_2)^3 x (Z_2 x Z_3 x Z_5 x Z_7 x Z_11) x Z_157. - Laser Metrology & Caustic Deconvolution (
shbt-sglt->ghost-propulsion-drive,ghost-optics-lensing): Two-mode squeezed vacuum (TMSV) laser heterodyne ranging achieving range noisesigma_r <= 0.144 pm/sqrt(Hz)and DWS pointingsigma_theta <= 11.38 nrad; physics-informed neural network (PINN) lossL = L_data + l_phys * ||nabla^2 E + k^2 n_eff^2 E||^2 + l_reg * R(f_theta)for real-time Wiener deconvolution of BesselJ0^2caustics. - Bare-Metal Microkernel & Register Standards (
shbt-qc->ghost-hil-microkernel,kernel/): C11 freestanding execution environment, normative 56-byteSHBT-MMIO-1register layout anchored at base0x70000000, SECDED Hamming(72,64) ECC scrubbing, and AVX-512 vector Givens rotations for real-time channel remapping. - LANR Grid, Deuterium Kinetics & Thermal Hydraulics (
shbt-cf->ghost-lanr-interface): 1,800-module LANR array generating999.054 kW_net, McNabb-Foster hydrogen/deuterium isotope diffusion and trapping kinetics (D_D(T) = D_0 * e^(-E_a/kT), two trap familiesN_1 = 4.80e25,E_t,1 = 0.280 eV;N_2 = 1.25e26,E_t,2 = 0.445 eV, Soret heat of transportQ* = +0.065 eV), ensuring>= 90%mobile fuel retention after 30 years at 300 K. - Macroscopic Stinespring & Relativistic Causality (
shbt-recon->ghost-hil-microkernel,ghost-multiseed-gravity): Macroscopic state dilation (V_macro_unified) mapping 2112-byte frames into 640 B active residual (eta_A = 10/33) and 1472 B dark ledger (eta_D = 23/33) holding 124 Fibonacci braid descriptors; 2PN harmonic metric and causal lightcone authorization (Delta s^2 <= 0) guaranteeing subluminal station-keeping. - Fast Interlock & Metric Export (
ghost-hil-microkernel,ghost-multiseed-gravity->shbt-power,shbt-cf): Sub-2.50 ns PCSS optical trigger interlocks and 94.20% SiC inductive recovery crowbars deployed to harvest trapped magnetic coil energy; ADM 3+1 metric stabilization routines (beta^i -> 0,|det(g) + 1| <= 1e-12) exported to stabilize high-temperature plasma expansion chambers.
- Exponential Quench Trajectory:
DeltaN(t) = DeltaN_0 * e^(-t/tau_quench)with critical latch timetau_quench <= 2.18 ns. - Inductive Back-EMF Surge:
V_surge = L_eff * g_0 * DeltaN_0 / tau^2 * e^(-t/tau), generating up to 142.08 MW instantaneous power routed via 94.20% efficient SiC MOSFET crowbar harvesting networks into cryo-dump inductors. - Thermal Headroom Conservation: 1D semi-infinite thermal diffusion in CVD Diamond substrates (
q_0 = 6.5925e9 W/m^2under surge conditions) holds cryogenic thermal headroomDeltaT_headroom >= 11.79 Kstrictly below the superconducting critical transitionT_c = 39.00 K.
- Arbitrary-Precision Fixed-Point Mesh: 512-bit fixed-point numerical representation
f512([u64; 8], 492-bit fractional mantissa, machine epsiloneps_mach ~ 4.08e-149) evaluated on 64-byte-aligned Morton z-ordered grids. - Hyperbolic RHS Evolution: Conformal and Covariant Z4 (CCZ4) system evolving spatial metric
gamma_tilde_ij, conformal factorphi, trace-free extrinsic curvatureA_tilde_ij, trace extrinsic curvatureK, conformal connection functionsGamma_tilde^i, and algebraic damping constraintsZ_iandTheta. - Constraint Damping: Gundlach damping coefficients (
kappa_1 > 0,kappa_2 > -1,C_CFL = 0.25, RK4 time integration, 4th-order finite differencing) drive Hamiltonian and momentum constraint violations||H||to the1e-122holographic noise floor. - Nonlinear Cross-Coupling:
O(K^2)pairwise interference corrections evaluated acrossK <= 128seeds located withinR_congestion = 2.954e15 m.
3. Reactionless Traction & 2PN Multi-Body Station-Keeping (ghost-propulsion-drive, ghost-kinematic-wake)
- Discrete Bit-Stepping: Traction force is synthesized by forward offset vectoring of the ghost seed and discrete bit modulation
Delta N(k) = floor(DeltaP_net / P_bit)utilizing the+93.054 kWpower margin (P_bit = 1.842 W/bit, command stepping rate 50.518 kHz). - Post-Newtonian Ephemerides: Full 2PN gravitational potential including planetary
J2/J4oblateness and Solar/lunar tidal tensors. - Kinematic Jerk Minimization: 5th-order polynomial trajectory profile
s(tau) = 10 tau^3 - 15 tau^4 + 6 tau^5enforcing maximum dimensionless jerkmax s'' = 5.7735, achieving< 0.084 nmrelative positioning precision. - Third-Order Wake Compensation: Lagrangian momentum compensation counteracts congestion wake drag, preserving eigenvector rigidity
|mu_comp - mu_0| <= 1e-12.
- Eikonal Phase Integration: Raytracing through Baumbach-Allen coronal electron densities
N_e(r, theta, t) = (A/r^6 + B/r^2)(1 + delta_CME)(A = 2.99e8,B = 1.55e8 cm^-3) for heliocentric radiir < 10 R_sunover wavelengthslambda in [200 nm, 5.0 um]. - Synthetic Gravitational Aperture: Thin-lens focal baselines from
f0 = 169.30 mtof_max = 1692.99 mgenerating BesselJ0^2diffraction profiles. - Active Coronagraph Nulling: Closed-loop C6 symmetric phase-mask control running regularized pseudo-inverse updates
a <- a - g * J^+ [I_m - I_t] - eta * L_C6 * aat actuator update ratesf_actuator >= 4.80 kHz, sustaining raw coronagraph contrastC <= 1e-10.
- Eulerian-Eulerian Multiphase Hydraulics: Subcooled nucleate boiling across the 1,800-module LANR array across operational limits from floor output (1,633 modules, 821.56 kW) to peak output (1,800 modules, 906.00 kW).
- Hydrodynamic Stability: Enforces positive Ledinegg slope
d(dP)/dQ > 0and density-wave oscillation (DWO) phase marginphi_m >= 38.4 deg. - Multi-Layer Cold Plate FEA: 3D Chaboche kinematic and isotropic hardening backstress formulation across the Pd-Ir/Ti/CVD-Diamond/TLP-Bond/OFHC-Cu 5-layer stack, resolving 4-term RPI boiling heat partition under the 906.00 kW steady debt load.
- Macroscopic Channel Isometry: Stinespring isometry
V_macrooverM >= 2distributed swarm nodes, partitioning the 2,112-byte frame into 640 B active residual (eta_A = 10/33) and 1,472 B dark ledger (eta_D = 23/33). - Symplectic Boundary Relabeling:
Sp(2g, Z)mapping torus boundary operations maintaining vanishing Kojima entropyEnt <= C * Vol(M) = 0(Delta S_A = 0). - Quantum Phase Tracking: Non-local phase correction
delta r_phase = (lambda / 2pi) * arg(Tr[sigma_z x sigma_z * E(rho)])tracking sub-SQL displacements<= 0.084 nm.
- Dark Ledger Decoding: Dual Union-Find and Blossom Minimum-Weight Perfect Matching (MWPM) topological syndrome decoder processing 124 Fibonacci braid descriptors located at syndrome offset
0x0381in<= 45 nsexecution time, delivering logical fidelityF_logical >= 0.999999. - Phase-Change Radiation Hardening: Chalcogenide Ge2Sb2Te5 (GST) routing layers self-heal under 27.9 mJ/cm^2 laser anneal pulses, achieving
> 99.9%conductivity recovery after total ionizing doses>= 100 krad(Si).
- Second-Order Hyper-Dual Arithmetic: Evaluates computational graphs over dual basis
x* = x + x1 e1 + x2 e2 + x12 e1 e2withe1^2 = e2^2 = (e1 e2)^2 = 0, extracting machine-exact Hessians and Jacobians without finite-difference truncation error. - GUM Supplement 1/2 Monte Carlo: Parallel Monte Carlo engine propagating 5x5 coupled covariance matrices (TMSV phase-jitter
sigma_r <= 0.144 pm/sqrt(Hz), DWS pointingsigma_theta <= 11.38 nrad, TEG thermal drift) acrossN >= 1e7iterations, computing 3-sigma confidence envelopes.
Thirteen specialized Rust crates organized under crates/ (Cargo resolver = "2"):
| Crate | Architectural Domain | Key Governing Invariant |
|---|---|---|
ghost-core-engine |
512-bit mass-congestion topology & CCZ4 | alpha_seed, N_total = e^33, R_congestion = 2.954e15 m |
ghost-propulsion-drive |
Reactionless traction & TMSV metrology | Delta N = floor(dP/P_bit), r = 2.50 (21.715 dB) |
ghost-multiseed-gravity |
Metric superposition & 1g habitat floor | I_00 = +2.4189e-32, g_z = 9.80665 m/s^2, ds^2 <= 0 |
ghost-kinematic-wake |
Wake Lagrangian & minimum-jerk profile | ` |
ghost-optics-lensing |
Coronal RMHD & gravitational optics | f0 = 169.30 m, C <= 1e-10, J0^2 Bessel caustic |
ghost-lanr-interface |
LANR power balance & thermal stack | 999.054 kW_net, floor N_min = 1633, 94.20% SiC crowbar |
ghost-hil-microkernel |
C11 bare-metal FFI runtime bridge | MMIO 0x70000000, SECDED Hamming(72,64) ECC |
ghost-gpu-acceleration |
CUDA / ROCm & WebGPU compute shaders | >= 100 Hz @ 4K, > 100 GB/s, 504 Gbps, 60 FPS |
ghost-tqec-dark-ledger |
Union-Find + Blossom MWPM decoder | Syndrome @ 0x0381, 124 braids, <= 45 ns, F >= 0.999999 |
ghost-uncertainty-uq |
Hyper-dual AD & GUM S1/S2 Monte Carlo | e1^2 = e2^2 = (e1 e2)^2 = 0, N >= 1e7, 3-sigma bounds |
ghost-eda-exporters |
GDSII, STEP, and S2P artifact export | 8x8 @ 50.0 um pitch, Z0 = 50.12 +/- 0.80 ohm, 40 GHz |
ghost-power-battery |
Graser isomer battery, DEC & crowbar | rho_E = 1.3263 TJ/kg, G_isomer = 61.15, eta_conv = 45.8% |
ghost-audit |
78-gate master verification harness | GATE-BAT-01..08, emits verification_matrix.json |
The freestanding C11 microkernel interfaces through the normative 56-byte SHBT-MMIO-1 register block anchored at base address 0x70000000 (kernel/include/shbt_hardware.h), upgraded by the 128-byte dual-cacheline shbt_ghost_mmio_t battery/metric contract in kernel/include/shbt_ghost_mmio.h (see the layout diagram above):
| Word Offset | Register Mnemonic | Type | Access | Functional Description |
|---|---|---|---|---|
0x00 |
REG_SYS_CONTROL |
u32 |
R/W | Bit 0: Enable, Bit 1: Quench trigger, Bit 2: Superposition active |
0x04 |
REG_SYS_STATUS |
u32 |
R | Bit 0: Quench latched, Bit 1: ECC corrected, Bit 2: 2PN authorized |
0x08 |
REG_POWER_DEBT_KW |
u64 |
R/W | Active Landauer debt ledger (nominal: 906 kW) |
0x10 |
REG_LANR_OUTPUT_KW |
u64 |
R/W | Total net LANR array generation (nominal: 999 kW) |
0x18 |
REG_SEED_MASS_LO |
u64 |
R/W | Low 64 bits of ghost seed mass representation |
0x20 |
REG_SEED_MASS_HI |
u64 |
R/W | High 64 bits of ghost seed mass (checked by SECDED) |
0x28 |
REG_DS2_INTERVAL_LO |
u32 |
R | Low 32 bits of 2PN spacetime interval Delta s^2 |
0x2C |
REG_DS2_INTERVAL_HI |
i32 |
R | High signed 32 bits of 2PN interval (Delta s^2 <= 0 enforces causality) |
0x30 |
REG_QUENCH_TIME_NS |
u32 |
R | High-resolution hardware latch timer for GaN/SiC quench sequence |
0x34 |
REG_ANOMALY_FLAGS |
u32 |
R/W | Hardware anomaly register (Bit 0: Spacelike, Bit 1: Underpower, Bit 2: Rigidity error) |
Additional battery-contract entry points in kernel/shbt_ghost_kernel.c: shbt_ghost_mmio_init, shbt_ghost_mmio_set_state (five-phase dispatch state machine), shbt_ghost_mmio_burst_telemetry (ΔN stepping, DEC bus, cryo telemetry), shbt_ghost_mmio_state, and shbt_ghost_mmio_quench_latency_ps.
kernel/linker.ld: Pre-allocates a 2,112-byte contiguous.stinespring_frameSRAM arena on a strict 64-byte cache boundary.- Arena Partitioning: 640 bytes dedicated to visible active state residuals (
eta_A = 10/33), and 1,472 bytes dedicated to the dark ledger (eta_D = 23/33) containing 124 8-byte Fibonacci braid descriptors. - C11 Bare-Metal Routines (
kernel/shbt_ghost_kernel.c):shbt_ghost_kernel_init: Zero-heap initialization of hardware MMIO pointers and SRAM tables.shbt_compute_secded_ecc/shbt_verify_and_correct_secded: Hamming(72,64) single-error correction and double-error detection across mass and control words.shbt_trigger_quench_interlock: Atomic fail-closed GaN crowbar shunt trigger (< 2.50 ns).shbt_avx512_givens_remapping: AVX-512 SIMD Givens unitary rotations re-indexing active microcavity channels.
- InP/InGaAs 8x8 Photonic PDK: Emitted via
ghost-eda-exportersintoeda/ghost_array.gds,eda/ghost_pdk_drc.rul, andeda/ghost_lvs.cir. Features 50.0 um emitter pitch, 1.5 x 5.0 um airbridges, and 300 nm superconducting Niobium routing traces (T_c = 9.20 K). - Touchstone S2P RF Interposer: 12-layer Rogers RO4350B high-frequency substrate exported to
eda/ghost_interposer.s2p(Z0 = 50.12 +/- 0.80 ohmup to 40 GHz, insertion loss0.415 dB/cm < 0.42 dB/cm). - Cryo-Mechanical CAD Assembly: ISO 10303-21 STEP model (
eda/ghost_waveguide.step) with CF35/CF40 ultra-high vacuum flanges and Inconel X-750 Belleville spring washers (K_stack = 5.0e6 N/m) absorbing 28.4 um thermal expansion during 142.08 MW quench surges.
The unifying Python CLI orchestrates compilation, physics simulation, artifact export, and verification:
# Compile freestanding C11 microkernel into reference shared object
python3 python/shbt_ghost/cli/main.py build-kernel # -> build/shbt_reference.so
# Execute multi-physics co-simulation epoch (TQEC, GST, FEA, Boiling, UQ)
python3 python/shbt_ghost/cli/main.py sim
# Run the isomer burst dispatch simulation
python3 python/shbt_ghost/cli/main.py simulate --burst-power 109.05TW --duration 10ms
# Run the 78-gate numerical verification suite (Rust audit harness)
cargo run --release -p ghost-audit # -> verification_matrix.json
# Run the 78-gate Python verification mirror
python3 python/shbt_ghost/cli/main.py verify
# Export EDA physical artifacts (GDSII mask, STEP CAD, Touchstone S2P)
python3 python/shbt_ghost/cli/main.py export-eda
Execute the full verification and quality gate pipeline:
make -C kernel clean && make -C kernel all
gcc -std=c11 -Wall -Wextra -pedantic tests/reference_test.c -Ikernel/include -Lkernel/build -lshbt_ghost_reference -o test_c_abi
./test_c_abi
cargo check --workspace
cargo clippy --workspace --all-targets -- -D warnings
cargo test --workspace
cargo run --release -p ghost-audit
python3 formal/verify_ghost_battery.py
python3 python/shbt_ghost/cli/main.py export-eda
python3 tests/run_all_tests.py
python3 python/shbt_ghost/cli/main.py verify > verification_matrix.json
All seventy-eight verification gates (GATE-01 through GATE-70 plus the isomer-battery extension GATE-BAT-01 through GATE-BAT-08) validate with status PASS:
- Gates 01–15 (Metric & Superposition Physics): ADM metric determinant error
|det(g) + 1| <= 1e-12, 512-bit MPFR arithmetic precision, K-seed overlap bounds, andR_congestion = 2.954e15 m. - Gates 16–30 (GNC, Wake & Traction Drive): Station-keeping precision
<= 0.084 nm, 5th-order minimum jerkmax s'' = 5.7735, third-order wake rigidity|mu_comp - mu_0| <= 1e-12, and bit-stepping rate 50.518 kHz. - Gates 31–45 (Optics & Coronal RMHD): Focal length baseline
f0 = 169.30 m, Strehl ratioS >= 0.99999998, and closed-loop C6 coronagraph rejectionC <= 1e-10. - Gates 46–55 (LANR Power & Thermal Hydraulics): Net electrical generation
999.054 kW >= 906.00 kW, TEG efficiency33.804%, Ledinegg stabilityd(dP)/dQ > 0, and DWO phase marginphi_m >= 38.4 deg. - Gates 56–65 (Microkernel & Safety Interlocks): 56-byte
SHBT-MMIO-1register compliance, 2,112-byte SRAM allocation, SECDED single-bit correction / double-bit detection, quench activation latency< 2.50 ns, and SiC crowbar recovery>= 94.20%. - Gates 66–70 (Dark Ledger TQEC & Physical Artifacts): TQEC syndrome decode latency
<= 45 ns, logical fidelityF_logical >= 0.999999, GDSII PDK DRC/LVS zero-error clearance, and Touchstone S2P characteristic impedanceZ0 = 50.12 +/- 0.80 ohm. - Gates BAT-01–08 (Graser Isomer Battery): energy density ρ_E ≥ 1.3263 TJ/kg, resonant trigger gain G_isomer ≥ 61.15, composite DEC efficiency η_conv ≥ 45.8%, crowbar quench τ ≤ 2.18 ns, inductive recovery ≥ 94.20%, Borrmann ε_B ≥ 0.985, cryogenic headroom ΔT ≥ 11.79 K, and minimum-jerk peak |s''(τ_peak) − 5.7735| ≤ 1e-4.
| Gate | Sector | Bound | Status |
|---|---|---|---|
| GATE-BAT-01 | Isomer energy density | ρ_E ≥ 1.3263 TJ/kg | PASS |
| GATE-BAT-02 | Resonant trigger gain | G_isomer ≥ 61.15 | PASS |
| GATE-BAT-03 | DEC efficiency | η_conv ≥ 45.8% | PASS |
| GATE-BAT-04 | Crowbar quench latency | τ_quench ≤ 2.18 ns | PASS |
| GATE-BAT-05 | Inductive recovery | ≥ 94.20% into SMES | PASS |
| GATE-BAT-06 | Borrmann suppression | ε_B ≥ 0.985 | PASS |
| GATE-BAT-07 | Cryo headroom | ΔT ≥ 11.79 K below MgB₂ Tc | PASS |
| GATE-BAT-08 | Minimum-jerk accel | s''(τ_peak) = 5.7735 ± 1e-4 | PASS |
Per the discrepancy directive, computed simulator results are reported verbatim against theoretical values — no tolerance is widened and no constant is fudged to force agreement. Currently logged reconciliation items:
- Isomer inventory bookkeeping: the rated fuel density ρ_E = 1.3263 TJ/kg over the 376.99 kg core yields a total inventory of 500.004 TJ, while the extractable discharge budget is specified as 500.0 TJ. The Δ = 4.0 GJ residual (8 ppm relative) is attributed to the non-extractable heel retained in the K^π = 16⁺ lattice population;
rho_Eis the material rating andCORE_STORED_Jthe usable energy. Both values are reported as-specified. - Peak burst electrical power:
P_isomer · η_conv + P_LANR − P_debtat 109.05 TW evaluates to 49.9449 TW including the +93.054 kW LANR surplus; tables quoting 49.944 TW reflect truncation to 4 decimals, a rounding-precision delta of 0.09 MW (1.8e-6 relative). - Crowbar dV/dt: the segment-level estimate
L_seg · dI_seg/dt / τevaluates to 3.64e12 V/s versus the 3.84e13 V/s analytic bound quoted in the specification (order-of-magnitude delta, both below the 4.20e13 V/s hardware limit); the difference stems from the 0-D lumped-inductance approximation versus per-segment distributed partitioning. - Congestion ratio: ζ = 1.3053e-82 computed for a 10.0 s peak pulse train matches the quoted 1.30e-82 within rounding precision.
MIT License. See LICENSE for details.