In-Sensor Polarimetric Optoelectronic Computing Based on Gate-Tunable 2D ...
Multi-Color Detection of Single Sensor Based on Tellurium Relaxation Char...
Uncooled InAsSb- based high- speed mid- wave infrared barrier detector
High Frequency Mid-Infrared Quantum Cascade Laser Integrated With Grounde...
Multi-function sensing applications based on high Q-factor multi-Fano res...
High-power electrically pumped terahertz topological laser based on a sur...
Van der Waals polarity-engineered 3D integration of 2D complementary logic
Distinguishing the Charge Trapping Centers in CaF2-Based 2D Material MOSFETs
Influence of Growth Process on Suppression of Surface Morphological Defec...
High-Power External Spatial Beam Combining of 7-Channel Quantum Cascade L...
官方微信
友情链接

All-Optical format conversion from PAM4 to QPSK based on non-degenerate Phase-Sensitive amplification and pump assisted nonlinear optical loop mirror

2024-03-21


Li, Qiankun; Wen, Huashun; Xu, Qi; Li, Yameng; Yang, Xiongwei; Yang, Jiali; Li, Yong; Yang, Huajun; Zhou, Heng Source: Optical Fiber Technology, v 84, May 2024;

Abstract:

An all-optical format conversion (AOFC) scheme from 4-ary pulse amplitude modulation (PAM4) to quadrature phase shift keying (QPSK) based on the non-degenerate phase-sensitive amplification (PSA) and the pump assisted nonlinear optical loop mirror (PA-NOLM) is proposed and numerically simulated for the first time. The input unipolar PAM4 signal with equal amplitude distance (UPAM4-A) is coupled with two input pump lights and injected into the symmetric interferometric fiber optic parameter amplifier (FOPA) to achieve the separation of the UPAM4-A and the new pump light generated at the signal frequency based on the non-degenerate PSA. When the filtered out UPAM4-A is coherent added with the new generated pump, the UPAM4-A signal to the biplolar PAM4 (BPAM4) signal. When the converted BPAM4 is sent into the PA-NOLM after adjusting its power, the BPAM4 signal could be converted into the QPSK signal. The error vector magnitude (EVM) and bit error ratio (BER) performance of the system are measured before and after AOFC with different input and receiver optical signal to noise ratio (OSNR). For the input UPAM4-A signal with an input OSNR of 27 dB, there is about 8.2 dB BER performance improvement in receiver OSNR for the final converted QPSK signal. Additionally, the proposed non-degenerate PSA configuration can be extended to realize the AOFC from one QPSK to two on–off keying (OOK) signals. The scheme can be applied in the optical gateway connecting the long-haul and the short-reach optical networks with suitable modulation formats.

© 2024 Elsevier Inc. (31 refs.)




关于我们
下载视频观看
联系方式
通信地址

北京市海淀区清华东路甲35号(林大北路中段) 北京912信箱 (100083)

电话

010-82304210/010-82305052(传真)

E-mail

semi@semi.ac.cn

交通地图
版权所有 中国科学院半导体研究所

备案号:京ICP备05085259-1号 京公网安备110402500052 中国科学院半导体所声明