论文标题
通过在自由空间大气通道上连续变化的量子通信中的光束徘徊引起的透射波动的稳定
Stabilization of transmittance fluctuations caused by beam wandering in continuous-variable quantum communication over free-space atmospheric channels
论文作者
论文摘要
湍流大气通道中的透射波动会导致正交过量的噪声,从而限制了连续变化的量子通信的适用性。这种波动通常是由于光束在接收孔周围徘徊而引起的。我们研究了通过扩展梁来稳定波动的可能性,并在连续变化的纠缠共享和量子键分布方面测试此通道稳定。我们对不同的梁宽度进行真实自由空间通道的透射测量,并表明梁膨胀可通过增加总体损失的成本来减少通道传输的波动。从理论上讲,我们还研究了共享纠缠状态或建立具有不同光束宽度的湍流大气通道上的安全量子键分布的可能性。我们显示了通过光束膨胀对通道稳定的积极作用,对连续可变的量子通信以及优化该方法的必要性,以最大程度地提高秘密密钥率或共享纠缠的量。梁膨胀方法也可以与稳定波动自由空间大气通道的其他方法结合使用,因此可以根据梁徘徊的表征对源和探测器进行自适应控制和探测器的自适应控制。
Transmittance fluctuations in turbulent atmospheric channels result in quadrature excess noise which limits applicability of continuous-variable quantum communication. Such fluctuations are commonly caused by beam wandering around the receiving aperture. We study the possibility to stabilize the fluctuations by expanding the beam, and test this channel stabilization in regard of continuous-variable entanglement sharing and quantum key distribution. We perform transmittance measurements of a real free-space atmospheric channel for different beam widths and show that the beam expansion reduces the fluctuations of the channel transmittance by the cost of an increased overall loss. We also theoretically study the possibility to share an entangled state or to establish secure quantum key distribution over the turbulent atmospheric channels with varying beam widths. We show the positive effect of channel stabilization by beam expansion on continuous-variable quantum communication as well as the necessity to optimize the method in order to maximize the secret key rate or the amount of shared entanglement. Being autonomous and not requiring adaptive control of the source and detectors based on characterization of beam wandering, the method of beam expansion can be also combined with other methods aiming at stabilizing the fluctuating free-space atmospheric channels.