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一种具有两种工作状态的新型硅正向偏置PIN马赫-曾德尔调制器。

A Novel Silicon Forward-Biased PIN Mach-Zehnder Modulator with Two Operating States.

作者信息

Yu Hang, Tu Donghe, Huang Xingrui, Yin Yuxiang, Yu Zhiguo, Guan Huan, Jiang Lei, Li Zhiyong

机构信息

State Key Laboratory on Integrated Optoelectronics, Institute of Semiconductors, Chinese Academy of Sciences, Beijing 100083, China.

College of Materials Science and Opto-Electronic Technology, University of Chinese Academy of Sciences, Beijing 100083, China.

出版信息

Micromachines (Basel). 2023 Aug 15;14(8):1608. doi: 10.3390/mi14081608.

Abstract

In this paper, we demonstrate a silicon forward-biased positive intrinsic negative (PIN) Mach-Zehnder modulator (MZM), which has two operating states of high efficiency and high speed. The two operating states are switched by changing the position where the electric signal is loaded. The modulator incorporates a PIN phase shifter integrated with the passive resistance and capacitance (RC) equalizer (PIN-RC), which expands the electro-optic (E-O) bandwidth by equalizing it with modulation efficiency. The fabricated modulator exhibits a low insertion loss of 1.29 dB in two operating states and a compact design with a phase shifter length of 500 μm. The modulation efficiencies are 0.0088 V·cm and 1.43 V·cm, and the corresponding 3 dB E-O bandwidths are 200 MHz and 7 GHz, respectively. The high-speed modulation performance of the modulator is confirmed by non-return-to-zero (NRZ) modulation with a data rate of 15 Gbps without any pre-emphasis or post-processing. The presented modulator shows functional flexibility, low insertion loss, and a compact footprint, and it can be suitable for applications like optical switch arrays and analog signal processing.

摘要

在本文中,我们展示了一种硅正向偏置的本征-负-本征(PIN)马赫-曾德尔调制器(MZM),它具有高效率和高速两种工作状态。通过改变电信号加载位置来切换这两种工作状态。该调制器集成了一个与无源电阻和电容(RC)均衡器集成在一起的PIN移相器(PIN-RC),通过与调制效率进行均衡来扩展电光(E-O)带宽。所制备的调制器在两种工作状态下均表现出1.29 dB的低插入损耗,并且具有紧凑的设计,移相器长度为500μm。调制效率分别为0.0088 V·cm和1.43 V·cm,相应的3 dB E-O带宽分别为200 MHz和7 GHz。调制器的高速调制性能通过15 Gbps数据速率的非归零(NRZ)调制得到证实,无需任何预加重或后处理。所展示的调制器具有功能灵活性、低插入损耗和紧凑的占地面积,适用于光开关阵列和模拟信号处理等应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d872/10456945/d08989779700/micromachines-14-01608-g001.jpg

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