Experimental Demonstration of a Nondestructive Controlled-NOT Quantum Gate for Two Independent Photon Qubits
Zhi Zhao, An‐Ning Zhang, Yu-Ao Chen, Han Zhang, Jiangfeng Du, Tao Yang, Jian-Wei Pan
Abstract
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Zhi Zhao, An‐Ning Zhang, Yu-Ao Chen, Han Zhang, Jiangfeng Du, Tao Yang, Jian-Wei Pan
Abstract
Open-access reader
Universal logic gates for two quantum bits (qubits) form an essential ingredient of quantum information processing. However, photons, one of the best candidates for qubits, suffer from a lack of strong nonlinear coupling, which is required for quantum logic operations. Here we show how this drawback can be overcome by reporting a proof-of-principle experimental demonstration of a nondestructive controlled-NOT (CNOT) gate for two independent photons using only linear optical elements in conjunction with single-photon sources and conditional dynamics. Moreover, we exploit the CNOT gate to discriminate all four Bell states in a teleportation experiment.
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Universal logic gates for two quantum bits (qubits) form an essential ingredient of quantum information processing. However, photons, one of the best candidates for qubits, suffer from a lack of strong nonlinear coupling, which is required for quantum logic operations. Here we show how this drawback can be overcome by reporting a proof-of-principle experimental demonstration of a nondestructive controlled-NOT (CNOT) gate for two independent photons using only linear optical elements in conjunction with single-photon sources and conditional dynamics. Moreover, we exploit the CNOT gate to discriminate all four Bell states in a teleportation experiment.
Key concepts: Controlled NOT gate, Physics, Quantum gate, Qubit, Quantum mechanics, Quantum teleportation, Photon, Quantum error correction