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首页> 外文期刊>Journal of Lightwave Technology >Quantum Theory of Noise in Stokes Vector Receivers and Application to Bit Error Rate Analysis
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Quantum Theory of Noise in Stokes Vector Receivers and Application to Bit Error Rate Analysis

机译:Stokes向量接收器中的噪声理论和误码率分析的应用

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摘要

Polarization-modulated optical signals can be demodulated via direct detection of Stokes vectors. In this article, we develop a quantum theory of noise in the Stokes vector receiver. Examining the conditions that enable simultaneous measurement of three elements of the Stokes vector, we demonstrate that an optical pre-amplifier in front of the Stokes vector receiver can reduce the power penalty associated with simultaneous measurements, down to the quantum limit of 3 dB. Then, the 3-D Gaussian noise model for the shot noise and optical pre-amplifier noise is discussed. Subsequently, based on the noise analyses, we derive bit error rate formulae for the cubic-lattice polarization modulation format and evaluate the sensitivity of the Stokes vector receiver.
机译:可以通过直接检测Stokes向量解调偏振调制光信号。在本文中,我们在Stokes向量接收器中开发了噪声的量子理论。检查能够同时测量STOKES向量的三个元素的条件,我们证明了Stokes向量接收器前面的光学预放大器可以减少与同时测量相关联的功率损失,下降到3dB的量子限制。然后,讨论了用于喷射噪声和光学预放大器噪声的3-D高斯噪声模型。随后,基于噪声分析,我们为立方晶格偏振调制调制格式导出误码率公式,并评估Stokes矢量接收器的灵敏度。

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