论文标题
通过复杂系统的往返传输中互惠诱导的对称性
Reciprocity-induced symmetry in the round-trip transmission through complex systems
论文作者
论文摘要
互惠是波物理的基本原理,在互换输入和输出时通过系统的传输中的对称性直接相关。连贯的传输矩阵(TM)是一种表征通过通用介质的波传输的方便方法。在这里,我们通过探索其TM属性来证明复杂介质的光学相互性质。我们通过循环100万的级数光学多模纤维(MMF)测量了前进和往返传播的相校正TM,以实验验证向前和向后传输之间的转置关系。这种对称性阻碍了往返TM近端测量的直接MMF校准。此外,我们展示了如何使用数字光相结合通过系统损失损害MMF,因为时间可逆性取决于功率保护。这些见解可能会通过复杂的媒体和光子系统中的波的相干控制来为新成像技术的开发提供信息。
Reciprocity is a fundamental principle of wave physics and directly relates to the symmetry in the transmission through a system when interchanging the input and output. The coherent transmission matrix (TM) is a convenient method to characterize wave transmission through general media. Here we demonstrate the optical reciprocal nature of complex media by exploring their TM properties. We measured phase-corrected TMs of forward and round-trip propagation through a looped 1m-long step-index optical multimode fiber (MMF) to experimentally verify a transpose relationship between forward and backward transmission. This symmetry impedes straightforward MMF calibration from proximal measurements of the round-trip TM. Furthermore, we show how focusing through the MMF with digital optical phase conjugation is compromised by system loss, since time reversibility relies on power conservation. These insights may inform development of new imaging techniques through complex media and coherent control of waves in photonic systems.