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Method and apparatus for free-space quantum key distribution in daylight

机译:在日光下分配自由空间量子密钥的方法和设备

摘要

A quantum cryptography apparatus securely generates a key to be used for secure transmission between a sender and a receiver connected by an atmospheric transmission link. A first laser outputs a timing bright light pulse; other lasers output polarized optical data pulses after having been enabled by a random bit generator. Output optics transmit output light from the lasers that is received by receiving optics. A first beam splitter receives light from the receiving optics, where a received timing bright light pulse is directed to a delay circuit for establishing a timing window for receiving light from the lasers and where an optical data pulse from one of the lasers has a probability of being either transmitted by the beam splitter or reflected by the beam splitter. A first polarizer receives transmitted optical data pulses to output one data bit value and a second polarizer receives reflected optical data pulses to output a second data bit value. A computer receives pulses representing receipt of a timing bright timing pulse and the first and second data bit values, where receipt of the first and second data bit values is indexed by the bright timing pulse.
机译:量子密码设备安全地生成用于在通过大气传输链路连接的发送方和接收方之间进行安全传输的密钥。第一激光器输出定时亮光脉冲;其他激光器在由随机位发生器使能后输出偏振光数据脉冲。输出光学器件发射来自激光器的输出光,该光被接收光学器件接收。第一分束器从接收光学器件接收光,其中接收的定时亮光脉冲被导向延迟电路,以建立定时窗口以接收来自激光器的光,并且来自其中一个激光器的光数据脉冲具有被分束器透射或被分束器反射。第一偏振器接收发送的光学数据脉冲以输出一个数据位值,第二偏振器接收反射的光学数据脉冲以输出第二数据位值。计算机接收代表定时定时亮定时脉冲以及第一和第二数据位值的接收的脉冲,其中第一和第二数据位值的接收由定时亮脉冲来索引。

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