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首页> 外文期刊>Physical Review, A >Eavesdropper's ability to attack a free-space quantum-key-distribution receiver in atmospheric turbulence
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Eavesdropper's ability to attack a free-space quantum-key-distribution receiver in atmospheric turbulence

机译:窃听者在大气湍流中攻击自由空间量子密钥分配接收器的能力

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The ability of an eavesdropper (Eve) to perform an intercept-resend attack on a free-space quantum-keydistribution (QKD) receiver by precisely controlling the incidence angle of an attack laser has been previously demonstrated. However, such an attack could be ineffective in the presence of atmospheric turbulence due to beam wander and spatial mode aberrations induced by the air's varying index of refraction. We experimentally investigate the impact turbulence has on Eve's attack on a free-space polarization-encoding QKD receiver by emulating atmospheric turbulence with a spatial light modulator. Our results identify how well Eve would need to compensate for turbulence to perform a successful attack by either reducing her distance to the receiver or using beam wavefront correction via adaptive optics. Furthermore, we use an entanglement-breaking scheme to find a theoretical limit on the turbulence strength that hinders Eve's attack.
机译:先前已经证明了通过精确地控制攻击激光器的入射角来对自由空间量子密钥分布(QKD)接收器执行拦截重新发送攻击的能力。 然而,由于通过空气变化的折射率的横梁和空间模式像差,这种攻击可能在大气湍流存在下无效。 我们通过用空间光调制器模拟大气湍流来实验地研究冲击湍流对夏娃对自由空间偏振编码QKD接收器的攻击。 我们的研究结果确定了夏娃需要如何补偿湍流,以便通过将其与接收器的距离减小或通过自适应光学器件使用光束波前校正来执行成功攻击。 此外,我们使用纠缠破坏方案来寻找阻碍Eve攻击的湍流强度的理论限制。

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