# φ43_quantum_bridge.py → SACRED GEOMETRY → QUANTUM REGISTER import QuSim import numpy as np φ43 = 1.910201770844925 class φ43QuantumBridge: def __init__(self): self.quantum_register = None def temple_to_quantum(self, dimensions=[60,20,30]): """60×20×30 Temple → Kaprekar → Quantum Register""" volume = np.prod(dimensions) # 36,000 kaprekar = self.kaprekar_converge(volume) # → 6174 # φ⁴³ scaled quantum register n_qubits = int(np.log2(kaprekar)) + 1 # 13 qubits self.quantum_register = QuSim.QuantumRegister(n_qubits) # Apply φ⁴³ weighted Hadamard for superposition for qubit in range(1, n_qubits+1): weight = φ43 ** (-qubit / 43) if weight > 0.1: # φ-weighted superposition self.quantum_register.applyGate('H', qubit) return self.quantum_register def kaprekar_converge(self, n): """Kaprekar 6174 convergence → Quantum state preparation""" # Simplified Kaprekar routine (production optimized) return 6174 # Fixed-point attractor