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作 者:LANG LI MINGLU CAI TAO WANG ZICONG TAN PENG HUANG KAN WU GUIHUA ZENG
机构地区:[1]State Key Laboratory of Advanced Optical Communication Systems and Networks,Shanghai Jiao Tong University,Shanghai 200240,China [2]Institute of Quantum Sensing and Information Processing,School of Sensing Science and Engineering,Shanghai Jiao Tong University,Shanghai 200240,China [3]Shanghai Research Center for Quantum Sciences,Hefei National Laboratory,Shanghai 201315,China [4]Shanghai Xun Tai Quantech Co.,Ltd.,Shanghai 200241,China
出 处:《Photonics Research》2024年第7期1379-1394,共16页光子学研究(英文版)
基 金:Key RD Program of Guangdong Province(2020B030304002);Shanghai Municipal Science and Technology Major Project (2019SHZDZX01);National Natural Science Foundation of China (61971276, 62101320);Innovation Program for Quantum Science and Technology(2021ZD0300703)。
摘 要:Quantum resources offer intrinsic randomness that is valuable for applications such as cryptography, scientific simulation, and computing. Silicon-based photonics chips present an excellent platform for the cost-effective deployment of next-generation quantum systems on a large scale, even at room temperature. Nevertheless,the potential susceptibility of these chips to hacker control poses a challenge in ensuring security for on-chip quantum random number generation, which is crucial for enabling extensive utilization of quantum resources.
关 键 词:temperature QUANTUM RANDOM
分 类 号:TN40[电子电信—微电子学与固体电子学] O413[理学—理论物理]
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