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Autocompensating quantum cryptographic key distribution system based on polarization splitting of light

机译:基于光偏振分裂的自动补偿量子密码密钥分配系统

摘要

A quantum cryptographic key distribution (QKD) system splits discrete light signals from a laser source into a pair of light pulses that are orthogonally polarized with respect to each other, imparts a phase shift to one or both of these separate pulses during their round trip from the sender to the receiver and back, assures that the return pulses from the receiver are attenuated to single-photon pulses, recombines the phase-shifted pulses at the sender, and then detects from the recombined signal its polarization state, which is representative of the net phase shift imparted by the sender and receiver. The phase modulator at the receiver transmits only one polarization (e.g., vertical), but is used in a manner that permits it to equally modulate both polarization components of an arriving pulse. In this arrangement, when both components of a pulse reach the phase modulator at the receiver, they are both entirely vertically polarized and a phase shift is imparted at that time. This has the advantage that the effect of any time variation or phase errors in the phase modulator will be the same on both components. The key information is decoded at a detection stage at the sender that uses two detectors, one of which detects a first polarization state corresponding to the phase difference between the two phase shifts being 0 and the other of which detects a second polarization state corresponding to the phase difference between the two phase shifts being &pgr;.
机译:量子密码密钥分配(QKD)系统将来自激光源的离散光信号分成彼此正交偏振的一对光脉冲,并在这些独立脉冲的往返行程中将一个或两个赋予相移。发送器到达接收器并返回,确保来自接收器的返回脉冲被衰减为单光子脉冲,在发送器处重新组合相移脉冲,然后从重新组合的信号中检测出其偏振态,该偏振态代表了发送者和接收者赋予的净相移。接收机处的相位调制器仅发射一个极化(例如,垂直),但是以允许其均等地调制到达脉冲的两个极化分量的方式使用。在这种布置中,当脉冲的两个分量到达接收器处的相位调制器时,它们都被完全垂直极化,并且此时施加了相移。这样做的好处是,相位调制器中任何时间变化或相位误差的影响在两个组件上都是相同的。在使用两个检测器的发送器的检测阶段,对密钥信息进行解码,该检测器中的一个检测与两个相移之间的相位差相对应的第一极化状态为0,而另一个检测与第二相移对应的第二极化状态。两个相移之间的相位差为。

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