quantum-state-computational-00
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| quantum-state-computational-00 [August 22, 2026 at 22:05] – created - external edit 127.0.0.1 | quantum-state-computational-00 [August 22, 2026 at 22:08] (current) – Ivan Janevski | ||
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| Prepare by: | Prepare by: | ||
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| 1. Initialize both qubits to ground state (automatic on startup or via reset gate) | 1. Initialize both qubits to ground state (automatic on startup or via reset gate) | ||
| 2. Measure both qubits in Z basis: outcomes are always 0, 0 | 2. Measure both qubits in Z basis: outcomes are always 0, 0 | ||
| Line 34: | Line 35: | ||
| - Single-qubit: | - Single-qubit: | ||
| - | - One-qubit excitation: [[quantum-state-computational-01|Computational 01]] or [[quantum-state-computational-10|Computational 10]] | + | - One-qubit excitation: [[quantum-state-computational-01|Computational 01]] or [[quantum-state-computational-10|Computational 10]] |
| - Two-qubit excitation: [[quantum-state-computational-11|Computational 11]] | - Two-qubit excitation: [[quantum-state-computational-11|Computational 11]] | ||
| - Bell states: |00⟩ is a component of [[quantum-state-bell-00|Bell 00 (|Φ⁺⟩)]] and [[quantum-state-bell-11|Bell 11 (|Φ⁻⟩)]] | - Bell states: |00⟩ is a component of [[quantum-state-bell-00|Bell 00 (|Φ⁺⟩)]] and [[quantum-state-bell-11|Bell 11 (|Φ⁻⟩)]] | ||
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