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Mitigating pointing requirements and turbulence effects in free-space quantum key distribution

机译:减轻自由空间量子密钥分配中的指向要求和湍流效应

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With the development of quantum computers, that can break current classical encryption schemes, unconditionally secure quantum key distribution (QKD) will become very important. Current fiber-based QKD implementations are limited to a few hundred kilometers due to optical losses in fiber and cannot be used with mobile platforms. A free space QKD system has recently been demonstrated over very large distances using entangled photons. However, due to the extremely high pointing accuracy required, the implementation of this QKD approach is very challenging and power demanding. Here we describe a new type of QKD link that uses modulating retro-reflectors. Our approach reduces pointing requirements by orders of magnitude, allowing an increase in pointing tolerance from microradians to tens of milliradians. Additionally, it reduces power requirements on the moving platform and has potential of reducing some influence of turbulence on the secure key distribution rate. Our approach relies on new, high extinction surface-normal multiple quantum well modulators with a maximum modulation rate of 100 MHz. We report on a BB84 QKD link using our system in the laboratory.
机译:随着可以打破当前经典加密方案的量子计算机的发展,无条件安全的量子密钥分发(QKD)将变得非常重要。由于光纤中的光损耗,当前基于光纤的QKD实现仅限于几百公里,并且不能与移动平台一起使用。最近,使用纠缠光子在很长的距离上证明了自由空间QKD系统。但是,由于需要极高的指向精度,因此此QKD方法的实施非常具有挑战性且对功率要求很高。在这里,我们描述了一种使用调制后向反射镜的新型QKD链接。我们的方法将指示要求降低了几个数量级,从而使指示公差从微弧度提高到数十毫弧度。另外,它减少了移动平台上的功率需求,并具有减少湍流对安全密钥分配率的影响的潜力。我们的方法依赖于新的,高度消光的表面法向多量子阱调制器,其最大调制速率为100 MHz。我们在实验室中使用我们的系统报告了BB84 QKD链接。

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