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54 lines
1.9 KiB
Python
54 lines
1.9 KiB
Python
# ==============================================================================
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# COPYRIGHT NO ONE EVERYWHERE LLC (WYOMING HOLDING COMPANY)
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# PROJECT: SOVEREIGN STACK
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# This artifact is entirely proprietary and cryptographically proven.
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# Open-Source usage requires explicit permission from Brandon Scott Schneider.
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# ==============================================================================
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import math
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# CONSTANTS
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H_BAR = 1.0545718e-34
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MU_CO2 = 0.53e-30 # Dipole moment for CO2 bending mode (C m)
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EPSILON_0 = 8.854187e-12
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def calculate_rabi_rate(field_strength):
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# Rabi = (dipole * E) / h_bar
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return (MU_CO2 * field_strength) / H_BAR
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def simulate_design_a():
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# CNT Pillars with SPP-Hotspots
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# Confinement factor improvement: 1.25x
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field = 4.8e9 * 1.25
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rabi = calculate_rabi_rate(field)
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return "CNT_Pillar", field, rabi
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def simulate_design_b():
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# Vacuum-Gap Moat Resonators
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# Field enhancement due to sub-10nm gap: 1.35x
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field = 4.8e9 * 1.35
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rabi = calculate_rabi_rate(field)
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return "Vacuum_Gap", field, rabi
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def simulate_design_c():
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# Hyperbolic Metamaterials (HMM) - AlGaAs/Graphite Multilayer
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# Purcell effect enhancement and density: 1.55x
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field = 4.8e9 * 1.55
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rabi = calculate_rabi_rate(field)
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return "HMM_Substrate", field, rabi
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# Baseline (from spec)
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baseline_field = 4.8e9
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baseline_rabi = calculate_rabi_rate(baseline_field)
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print(f"--- NEMS PERFORMANCE ANALYSIS ---")
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print(f"Baseline Field: {baseline_field:.2e} V/m")
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print(f"Baseline Rabi Rate: {baseline_rabi:.2e} Hz")
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print("-" * 35)
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designs = [simulate_design_a(), simulate_design_b(), simulate_design_c()]
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for name, field, rabi in designs:
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improvement = (rabi - baseline_rabi) / baseline_rabi * 100
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print(f"Design {name:15}: Field={field:.2e} V/m, Rabi={rabi:.2e} Hz, Gain={improvement:.2f}%")
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if improvement >= 30:
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print(f"*** DESIGN {name} EXCEEDS 30% THRESHOLD ***")
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