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⍝ AEONMI Quantum Programming Language - Hieroglyphic Demo
⍝ Showcasing Egyptian quantum-native variable declarations
print("🔮 AEONMI HIEROGLYPHIC QUANTUM DEMONSTRATION 🔮");
print("===============================================");
⍝ Classical Quantum Variables (𓀀)
print("\n📊 CLASSICAL QUANTUM VARIABLES:");
𓀀 photon_count = 1000;
𓀀 qubit_state = "|0⟩";
𓀀 measurement_result = 0.7071067812;
print("Photons detected:", photon_count);
print("Initial qubit state:", qubit_state);
print("Measurement amplitude:", measurement_result);
⍝ Superposition Variables (𓀁)
print("\n⚛️ SUPERPOSITION QUANTUM VARIABLES:");
𓀁 quantum_state = "|0⟩ + |1⟩";
𓀁 bell_state = "entangled pair";
𓀁 coherence_time = 100;
print("Quantum superposition:", quantum_state);
print("Bell state:", bell_state);
print("Coherence time (μs):", coherence_time);
⍝ Tensor Product Variables (𓀂)
print("\n🔗 TENSOR PRODUCT QUANTUM VARIABLES:");
𓀂 multi_qubit = "q1 ⊗ q2 ⊗ q3";
𓀂 entanglement_degree = 0.95;
𓀂 system_dimension = 8;
print("Multi-qubit system:", multi_qubit);
print("Entanglement measure:", entanglement_degree);
print("Hilbert space dimension:", system_dimension);
⍝ Quantum Approximation Variables (𓀃)
print("\n≈ QUANTUM APPROXIMATION VARIABLES:");
𓀃 phase_estimate = 1.5708;
𓀃 error_bound = 0.001;
𓀃 fidelity = 0.999;
print("Estimated phase (rad):", phase_estimate);
print("Error bound:", error_bound);
print("Quantum fidelity:", fidelity);
⍝ Extended Quantum Types
print("\n🌟 EXTENDED QUANTUM VARIABLE TYPES:");
𓀄 eigenvalue = -1;
𓀅 quantum_register = "5-qubit register";
𓀆 operator_norm = 1.0;
𓀇 trace_distance = 0.05;
print("Computed eigenvalue:", eigenvalue);
print("Quantum register:", quantum_register);
print("Operator norm:", operator_norm);
print("Trace distance:", trace_distance);
print("\n✨ AEONMI: Where Ancient Symbols Meet Quantum Computing! ✨");
print("The future of quantum programming is written in hieroglyphs.");