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利用混合光学相位压缩器对相位编码信号进行相位再生。

Phase regeneration of phase encoded signals by hybrid optical phase squeezer.

作者信息

Kurosu Takayuki, Gao Mingyi, Solis-Trapala Karen, Namiki Shu

出版信息

Opt Express. 2014 May 19;22(10):12177-88. doi: 10.1364/OE.22.012177.

Abstract

We present a new method to perform phase regeneration of phase encoded signals. In our concept called "hybrid optical phase squeezer (HOPS)," a multilevel phase-quantized signal is synthesized through the coherent addition of a phase-conjugate copy of the signal and a phase harmonic of the signal with a frequency shifter. Unlike the conventional method by phase sensitive amplification, HOPS does not use any optical parametric gain such that only optical elements with low optical nonlinearity are necessary for optical phase quantization. In the proof-of-concept experiment, it is confirmed that a 2-level HOPS can perform quadrature squeezing with an extinction ratio of 40 dB. Simultaneous phase regeneration of two coherent wavelength-division-multiplexed 10.75-Gb/s binary phase-shift keyed signals is successfully demonstrated using a 2-level HOPS based on a semiconductor optical amplifier.

摘要

我们提出了一种执行相位编码信号相位再生的新方法。在我们称为“混合光学相位压缩器(HOPS)”的概念中,通过信号的相位共轭副本与信号的相位谐波通过移频器的相干相加来合成多级相位量化信号。与传统的相位敏感放大方法不同,HOPS不使用任何光学参量增益,因此光学相位量化仅需要具有低光学非线性的光学元件。在概念验证实验中,证实了二级HOPS可以实现消光比为40 dB的正交压缩。使用基于半导体光放大器的二级HOPS成功演示了两个相干波分复用10.75 Gb/s二进制相移键控信号的同时相位再生。

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