论文标题

使用来自纠缠光子相关测量的反馈,非本地极化对准和控制纤维中的对照

Non-local polarization alignment and control in fiber using feedback from correlated measurements of entangled photons

论文作者

Dowling, Evan, Morris, Mark, Baumgartner, Gerald, Roy, Rajarshi, Murphy, Thomas E.

论文摘要

使用纠缠光子的极化来编码量子信息的量子测量需要校准和对齐在空间分开的观察者之间的测量库。由于温度波动或外部机械振动引起的光纤的双折射变化,纤维通道末端的极化状态是不可预测的,而且时间变化。最初针对经典光学通信开发的极化跟踪和稳定方法不能应用于偏振符号的光子,在极化的光子中,该光子分别检测到的光子在统计上是统计的,但量子与机械相关。我们在这里报告了一种快速的方法,用于自动对齐和动态跟踪空间分离的检测器之间的极化测量库。该系统使用Nelder-Mead单纯形方法来最大程度地减少非局部测量的纠缠光子对之间观察到的巧合速率,而无需依赖经典的波长 - 培训飞行员调音或时间交织的极化光子。对齐和控制在7.1公里部署的光纤环以及受控的漂移方案中被证明。

Quantum measurements that use the entangled photons' polarization to encode quantum information require calibration and alignment of the measurement bases between spatially separate observers. Because of the changing birefringence in optical fibers arising from temperature fluctuations or external mechanical vibrations, the polarization state at the end of a fiber channel is unpredictable and time-varying. Polarization tracking and stabilization methods originally developed for classical optical communications cannot be applied to polarization-entangled photons, where the separately detected photons are statistically unpolarized, yet quantum mechanically correlated. We report here a fast method for automatic alignment and dynamic tracking of the polarization measurement bases between spatially separated detectors. The system uses the Nelder-Mead simplex method to minimize the observed coincidence rate between non-locally measured entangled photon pairs, without relying on classical wavelength-multiplexed pilot tones or temporally interleaved polarized photons. Alignment and control is demonstrated in a 7.1 km deployed fiber loop as well as in a controlled drifting scenario.

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