Hardware Noise & Feature Map Configuration
Operational
Physical Error Rate (p)
10.0%
0.0% (Ideal)
10.0% (Breakthrough Threshold)
15.0%
4-Qubit Basis State Probabilities |ψ(x)⟩
16 State Vectors
Target State Signal
Incoherent Noise Dispersion
Live Telemetry & Classification Resilience
Classification Accuracy
100.0%
Circuit State Fidelity
0.965
Encoding Advantage
Superior (10x vs Standard Angle)
Noise Tolerance Limit
10.0%
Accuracy vs Error Rate Benchmark
0% - 15% Noise Sweep
Amplitude-Inspired (100% to 10% Noise)
Standard Angle (Decays at 1% Noise)
Current Operating Point
Validated NISQ Simulation
Qubits: 4
Circuit Depth: 8
Noise Model: Depolarizing
Error Rate: 10.0%
Amplitude-inspired quantum feature maps compress high-dimensional feature vectors directly into quantum state amplitudes, achieving 10x noise tolerance compared to standard single-qubit rotation angle encoding. Even at 10.0% physical noise, the fidelity (0.965) maintains complete separation boundary preservation and 100.0% classification accuracy.