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Bell-State Entanglement Visualizer

Quantum

HH on q0q_0 followed by CNOT(q0q1)\operatorname{CNOT}(q_0\to q_1). Toggling the initialization ports selects which Bell pair is prepared; amplitudes and the correlation index are derived, and a measure button accumulates real Born-rule shots.

6 components · 5 connections · state-vector + Born sampler

recommended lab 3 of 11

Distinguish an entangled Bell state from a classical mixture using outcomes and CHSH.

Prerequisite: none — start here.

predict · then test

After HH and CNOT prepare Φ+|\Phi^+\rangle, which outcomes can a ZZ-basis measurement produce?

Commit before the explanation appears. This is a prediction, not a quiz score.

governing model
Φ+=00+112    ZZ[1,+1]|\Phi^+\rangle = \dfrac{|00\rangle + |11\rangle}{\sqrt{2}} \;\cdot\; \langle Z \otimes Z \rangle \in [-1, +1]
structural inventory
  • 2×2\times qubit register line
  • Hadamard gate
  • CNOT control/target
  • measurement ports
boundaries
  • 44 Bell states
  • amplitudes ±1/2\pm 1/\sqrt{2}
  • CHSH witness S[0,22]S\in[0,2\sqrt{2}]
diagnosis challenge Fault identity withheld: infer it from the changed outputs first.
causal signal trace paused

Prepare 00\lvert 00\rangle Both qubits begin separable and deterministic.

step 1 / 4 Prepare |00⟩

simulation 03 · quantum Bell-state execution field
register prepared mode=full
Bell-State Entanglement Visualizer6 components and 5 connections.Q0q0 = |0⟩Q1q1 = |0⟩HH1HCX1CNOTM0M0M1M1
Bell-State Entanglement Visualizer

Hover an active operator to inspect its transform

state vector · Z basis |00⟩
100%|00⟩0%|01⟩0%|10⟩0%|11⟩

control surface

01INIT02H03CNOT04MEASURE

coherent coupling · nominal

live telemetry

CHSH witness 2.000 classical bound
correlation 100.0% same-bit outcomes
measurements 0 awaiting sample

Measurement leaves the 50/50 theoretical distribution intact until sampled.