Quantum secure ghost imaging
Xin Yao, Xu Liu, Lixing You, Zhen Wang, Xue Feng, Fang Liu, Kaiyu Cui, Yidong Huang, Wei Zhang
Abstract
Xin Yao, Xu Liu, Lixing You, Zhen Wang, Xue Feng, Fang Liu, Kaiyu Cui, Yidong Huang, Wei Zhang
Abstract
In this work, we propose a scheme of quantum secure ghost imaging (QSGI), which combines temporal quantum ghost imaging and security test based on quantum entanglement. Utilizing the quantum feature of entangled photon pairs, the eavesdropping in the imaging process can be detected, with a certain degree of protection on the object information. The proposed scheme is demonstrated by experiment, in which photon pairs are generated by a quantum light source based on a silicon waveguide. Two-dimensional patterns are imaged line by line over 50 km optical fibers and the security test is realized by two-photon interference for energy-time entanglement. QSGI could be applied in scenarios of secure imaging and surveillance, and may inspire new ideas on specific quantum communication tasks.
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In this work, we propose a scheme of quantum secure ghost imaging (QSGI), which combines temporal quantum ghost imaging and security test based on quantum entanglement. Utilizing the quantum feature of entangled photon pairs, the eavesdropping in the imaging process can be detected, with a certain degree of protection on the object information. The proposed scheme is demonstrated by experiment, in which photon pairs are generated by a quantum light source based on a silicon waveguide. Two-dimensional patterns are imaged line by line over 50 km optical fibers and the security test is realized by two-photon interference for energy-time entanglement. QSGI could be applied in scenarios of secure imaging and surveillance, and may inspire new ideas on specific quantum communication tasks.
Key concepts: Eavesdropping, Ghost imaging, Quantum entanglement, Physics, Quantum imaging, Quantum cryptography, Quantum sensor, Photon