论文标题

使用点衍射干涉法测定空间量子状态

Determination of spatial quantum states by using Point Diffraction Interferometry

论文作者

Stefano, Quimey Pears, Rebón, Lorena, Iemmi, Claudio

论文摘要

我们提出了一种基于点衍射干涉仪的任意尺寸$ d $的纯空间空间量的方法。在拟议的方案中,一旦通过$ d $ slits发送了光子场的离散横向位置,将量子状态通过$ d $ slits的光圈发送,并添加已知的背景以提供相位参考。为了表征这些光子量子状态,完整的相波前通过相变技术重建。结合多轴检测器,可以并行化采集,只需要四个干涉图即可重建任何纯Qudit,而与尺寸$ d $无关。我们通过实验测试了该方法,以重建尺寸$ d = 6 $随机选择的状态。获得的平均保真度值为$ 0.95 $。此外,我们开发了一个实验方案,该方案允许估计传播时影响波前的相位畸变,从而改善量子状态估计。在这方面,我们提出了原则证明,该证明表明有可能纠正自由空间通信中湍流的影响,从而恢复了与无湍流的传播相当的平均富达价值。

We present a method to reconstruct pure spatial qudits of arbitrary dimension $d$, which is based on a point diffraction interferometer. In the proposed scheme, the quantum states are codified in the discretized transverse position of a photon field, once they are sent through an aperture with $d$ slits, and a known background is added to provide a phase reference. To characterize these photonic quantum states, the complete phase wavefront is reconstructed through a phase-shifting technique. Combined with a multipixel detector, the acquisition can be parallelized, and only four interferograms are required to reconstruct any pure qudit, independently of the dimension $d$. We tested the method experimentally, for reconstructing states of dimension $d=6$ randomly chosen. A mean fidelity values of $0.95$ is obtained. Additionally, we develop an experimental scheme that allows to estimate phase aberrations affecting the wavefront upon propagation, and thus improve the quantum state estimation. In that regard, we present a proof-of-principle demonstration that shows the possibility to correct the influence of turbulence in a free-space communication, recovering mean fidelity values comparable to the propagation free of turbulence.

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