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基于相干四端口微环谐振器的可重构偏振处理器。

Reconfigurable polarization processor based on coherent four-port micro-ring resonator.

作者信息

Yi Dan, Luan Jiapeng, Wang Yi, Tsang Hon Ki

机构信息

Department of Electronic Engineering, The Chinese University of Hong Kong, Hong Kong, China.

出版信息

Nanophotonics. 2023 Oct 23;12(22):4127-4136. doi: 10.1515/nanoph-2023-0031. eCollection 2023 Nov.

Abstract

Polarization processors with versatile functionalities are needed in optical systems, which use or manipulate polarized light. In this paper, we propose and realize an integrated polarization processor based on a coherent 4-port micro-ring resonator. The arbitrary unknown polarization state is input to the polarization processor via a 2-dimensional grating coupler (2DGC), which serves as a polarization beam splitter. The coherent 4-port micro-ring resonator (MRR) operates as a unitary processor and is formed by one crossbar micro-ring resonator and two thermally tunable phase shifters, one of which tunes the micro-ring while the other tunes the coherent interference between the two inputs from the 2DGC. The 4-port system can be used to control the input polarization states that appear at the two output ports and, therefore, can be used to implement a multi-function polarization processor, including polarization descrambler, polarization switch, polarizers, and polarization analyzer (both division of space (DOS) and division of time (DOT)). In this paper, we experimentally demonstrate the use of coherent 4-port MRR for polarization mode switching and for polarization mode unscrambling. The polarization unscrambler was capable of separating two polarization-multiplexed 40 GHz data lanes from the input fiber with crosstalk levels below -21 dB and is suitable for use in the receiver for polarization-multiplexed direct-detection optical communications systems. The same photonic circuit may be used as a polarization analyzer, either as a DOS polarization analyzer or a DOT polarization analyzer. The DOS polarization analyzer measured the polarization with measured deviation of the orientation angle (2) varying from -0.5° to 1.3°and deviation of ellipticity angle (2) varying from -0.98° to 7.27°. The DOT polarization analyzer measured the polarization with a deviation of the orientation angle (2) that varied from -2.93° to 3.49° and deviation of ellipticity angle (2) that varied from -3.5° to 3.05°.

摘要

在使用或操纵偏振光的光学系统中,需要具有多种功能的偏振处理器。在本文中,我们提出并实现了一种基于相干4端口微环谐振器的集成偏振处理器。任意未知偏振态通过用作偏振分束器的二维光栅耦合器(2DGC)输入到偏振处理器中。相干4端口微环谐振器(MRR)作为一个酉处理器运行,由一个交叉微环谐振器和两个热可调相移器组成,其中一个调谐微环,另一个调谐来自2DGC的两个输入之间的相干干涉。该4端口系统可用于控制出现在两个输出端口的输入偏振态,因此可用于实现多功能偏振处理器,包括偏振解扰器、偏振开关、偏振器和偏振分析仪(空间分割(DOS)和时间分割(DOT))。在本文中,我们通过实验证明了相干4端口MRR用于偏振模式切换和偏振模式解扰。该偏振解扰器能够从输入光纤中分离出两个偏振复用的40 GHz数据通道,串扰水平低于-21 dB,适用于偏振复用直接检测光通信系统的接收器。同一个光子电路可以用作偏振分析仪,既可以用作DOS偏振分析仪,也可以用作DOT偏振分析仪。DOS偏振分析仪测量的偏振方向角(2)偏差在-0.5°至1.3°之间变化,椭圆率角(2)偏差在-0.98°至7.27°之间变化。DOT偏振分析仪测量的偏振方向角(2)偏差在-2.93°至3.49°之间变化,椭圆率角(2)偏差在-3.5°至3.05°之间变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0d9/11501827/81efcf192495/j_nanoph-2023-0031_fig_001.jpg

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