Interactive 3D Visualization

Qubit State Visualizer

Explore quantum states through interactive Bloch sphere visualizations. Configure qubits, apply gates, and observe quantum behavior in real-time.

2-8 Qubits
Gate Operations
Entanglement Viz

Qubit Configuration

Configure and manipulate quantum states

Animating
4
2 qubits8 qubits
Q0
Bell
Q1
Q2
Bell
Q3
State Vector
|ψ⟩ = 0.913|0⟩ + 0.408ei0.00π|1⟩
P(|0⟩)
83.4%
P(|1⟩)
16.6%
Bloch Coordinates
θ = 0.27π, φ = 0.00π
Entanglement
Bell pair with Q1

Quantum State Visualization

Interactive Bloch sphere representation

|0⟩/|1⟩
|+⟩/|-⟩
Entangled

Loading 3D visualization...

Density Matrix ρ
0.83
0.37
0.37
0.17
Tr(ρ) = 1.00
Controls: Drag to rotate | Scroll to zoom | Click qubit to select
4
Total Qubits
2
Entangled Pairs
83.4%
P(|0⟩)
16.6%
P(|1⟩)
0
Measured
Learn Quantum Basics

Understanding Quantum Computing

Learn the fundamentals of quantum mechanics that power QADIS anomaly detection.

Bloch Sphere

A geometric representation of a qubit state. The north pole represents |0⟩, the south pole represents |1⟩, and points on the surface represent superposition states.

Pure states lie on the surface
Mixed states are inside the sphere
Rotation = quantum gate operation

Quantum Gates

Operations that manipulate qubit states. The Hadamard gate (H) creates superposition, while CNOT creates entanglement between qubits.

Hadamard: |0⟩ → |+⟩ superposition
Pauli-X: Bit flip operation
T-gate: Phase rotation

Entanglement

A quantum phenomenon where qubits become correlated. Measuring one entangled qubit instantly affects its partner, enabling powerful quantum computations.

Bell states: Maximally entangled
Non-local correlations
Key for quantum advantage