Two-step complete polarization logic Bell-state analysis
Abstract
The Bell state plays a significant role in the fundamental tests of quantum mechanics, such as the nonlocality of the quantum world. The Bell-state analysis is of vice importance in quantum communication. Existing Bell-state analysis protocols usually focus on the Bell-state encoding in the physical qubit directly. In this paper, we will describe an alternative approach to realize the near complete logic Bell-state analysis for the polarized concatenated Greenberger-Horne-Zeilinger (C-GHZ) state with two logic qubits. We show that the logic Bell-state can be distinguished in two steps with the help of the parity-check measurement (PCM) constructed by the cross-Kerr nonlinearity. This approach can be also used to distinguish arbitrary C-GHZ state with N logic qubits. As both the recent theoretical and experiment work showed that the C-GHZ state has its robust feature in practical noisy environment, this protocol may be useful in future long-distance quantum communication based on the logic-qubit entanglement.
- Publication:
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Scientific Reports
- Pub Date:
- August 2015
- DOI:
- 10.1038/srep13453
- arXiv:
- arXiv:1407.3473
- Bibcode:
- 2015NatSR...513453S
- Keywords:
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- Quantum Physics
- E-Print:
- 9 pages, 3 figures