量子密钥分配
计算机科学
光子学
电子工程
量子信道
量子信息
光学
量子
物理
工程类
量子力学
光子
作者
Rebecka Sax,Alberto Boaron,Gianluca Boso,Simone Atzeni,Andrea Crespi,Fadri Grünenfelder,Davide Rusca,Aws Al Saadi,Danilo Bronzi,Sebastian Kupijai,H. Rhee,Roberto Osellame,Hugo Zbinden
摘要
Quantum key distribution (QKD) is nowadays a well-established method for generating secret keys at a distance in an information-theoretically secure way, as the secrecy of QKD relies on the laws of quantum physics and not on computational complexity. In order to industrialize QKD, low-cost, mass-manufactured, and practical QKD setups are required. Hence, photonic and electronic integration of the sender’s and receiver’s respective components is currently in the spotlight. Here we present a high-speed (2.5 GHz) integrated QKD setup featuring a transmitter chip in silicon photonics allowing for high-speed modulation and accurate state preparation, as well as a polarization-independent low-loss receiver chip in aluminum borosilicate glass fabricated by the femtosecond laser micromachining technique. Our system achieves raw bit error rates, quantum bit error rates, and secret key rates equivalent to a much more complex state-of-the-art setup based on discrete components [ Boaron A. et al. , Phys. Rev. Lett. 121 , 190502 ( 2018 ) ].
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