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Real-time interferometric quantum random number generation on chip

机译:芯片上实时干涉量子随机数生成

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We demonstrate on-chip quantum random number generation at high data rates using the random phases of gain-switched laser pulses. Interference of the gain-switched pulses produced by two independent semiconductor lasers is performed on a photonic integrated circuit and the resulting pulse train is received and processed in real time using homebuilt capture electronics consisting of a field programmable gate array and a 10-bit digitizer. Random numbers with low correlation coefficient are shown for pulse clock rates of 1 GHz and data rates of 8 Gbps. The random numbers are also shown to successfully pass all tests within the National Institute for Standards and Technology test suite. The system provides genuine random numbers in a compact platform that can be readily integrated into existing quantum cryptographic technology. (C) 2019 Optical Society of America
机译:我们使用增益切换激光脉冲的随机相位以高数据速率展示片上量子随机数。 在光子集成电路上执行由两个独立的半导体激光器产生的增益切换脉冲的干扰,并且使用由现场可编程门阵列和10位数字转换器组成的房屋捕获电子器件实时接收和处理所得到的脉冲系。 具有低相关系数的随机数显示为1 GHz的脉冲时钟速率和8 Gbps的数据速率。 随机数也显示成功通过国家标准和技术测试套件内的所有测试。 该系统在紧凑的平台中提供了正版随机数,可以容易地集成到现有量子加密技术中。 (c)2019年光学学会

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