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Polarization-insensitive interferometer based on a hybrid integrated planar light-wave circuit 被引量:1
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作者 GUO-WEI ZHANG YU-YANG DING +8 位作者 WEI CHEN FANG-XIANG WANG PENG YE GUAN-ZHONG HUANG SHUANG WANG ZHEN-QIANG YIN JUN-MING AN GUANG-CAN GUO ZHENG-FU HAN 《Photonics Research》 SCIE EI CAS CSCD 2021年第11期2176-2181,共6页
Interferometers are essential elements in classical and quantum optical systems.The strictly required stability when extracting the phase of photons is vulnerable to polarization variation and phase shift induced by e... Interferometers are essential elements in classical and quantum optical systems.The strictly required stability when extracting the phase of photons is vulnerable to polarization variation and phase shift induced by environment disturbance.Here,we implement polarization-insensitive interferometers by combining silica planar light-wave circuit chips and Faraday rotator mirrors.Two asymmetric interferometers with temperature controllers are connected in series to evaluate the single-photon interference.Average interference visibility over 12 h is above 99%,and the variations are less than 0.5%,even with active random polarization disturbance.The experiment results verify that the hybrid chip is available for high-demand applications like quantum key distribution and entanglement measurement. 展开更多
关键词 PLANAR insensitive QUANTUM
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