论文标题
通过可重新配置的光子积分电路在空间上解析幅度和光相
Spatially resolving amplitude and phase of light with a reconfigurable photonic integrated circuit
论文作者
论文摘要
光子综合电路(图片)在许多应用中起着关键作用。特别有力的是基于可重构的Mach-Zehnder干涉仪的网格,因为它们能够积极地处理光线。存在各种可能性进入此类电路的可能性。用精心设计的自由空间界面采样电磁场分布是其中之一。在这里,可重新配置的PIC用于光学采样和处理自由空间梁,以实现振幅和相位的空间分辨探测器。为了进行此类测量,我们开发并实验实现了一种多功能方法,用于校准和运行这种基于光子的检测器。即使从设计波长运行芯片时,我们的技术也可以在广泛的参数范围内工作。在现代科学和技术中,振幅,相位和极化敏感测量值非常重要,为此类探测器提供了广泛的应用。
Photonic integrated circuits (PICs) play a pivotal role in many applications. Particularly powerful are circuits based on meshes of reconfigurable Mach-Zehnder interferometers as they enable active processing of light. Various possibilities exist to get light into such circuits. Sampling an electromagnetic field distribution with a carefully designed free-space interface is one of them. Here, a reconfigurable PIC is used to optically sample and process free-space beams so as to implement a spatially resolving detector of amplitudes and phases. In order to perform measurements of this kind we develop and experimentally implement a versatile method for the calibration and operation of such integrated photonics based detectors. Our technique works in a wide parameter range, even when running the chip off the design wavelength. Amplitude, phase and polarization sensitive measurements are of enormous importance in modern science and technology, providing a vast range of applications for such detectors.