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光纤中单光子传输方程的求解及分析∗

陶在红 秦媛媛 孙斌 孙小菡

物理学报2016,Vol.65Issue(13):130301-1-130301-7,7.
物理学报2016,Vol.65Issue(13):130301-1-130301-7,7.DOI:10.7498/aps.65.130301

光纤中单光子传输方程的求解及分析∗

Perturb ed solution and analyses for single photon transmission equation in optical fib er

陶在红 1秦媛媛 2孙斌 1孙小菡1

作者信息

  • 1. 东南大学光传感/通信综合网络国家研究中心,南京 210096
  • 2. 南京信息工程大学电子信息与工程学院,南京 210044
  • 折叠

摘要

Abstract

As is well known, quantum optics has developed significantly in recent years and advanced several hot research topics, such as quantum communications, quantum sensing, quantum calculations, etc. Among these researches, it is important to understand the quantum information transmitting in optical fiber. For realizing longer transmission distance and better transmission quality, great effort has devoted to the researches of encoding and decoding at the transmitter and the receiver end. However, less attention was paid to the fading of signal in the transmission channel. In this work, we mainly focus on the transmission model of optical quantum transmission and the influences of loss, dispersion and nonlinear effect on fiber transmission of optical quantum information are also discussed. Quantum information transmission can be influenced by loss, dispersion and nonlinear effect in optical fiber, leading to transmission state evolution and energy transfer. Based on the transmission equation of single mode fiber and quantum theory of electromagnetic field, the fundamental mode field of single mode fiber is quantized. A quantum transmission equation is deduced from the classical optical transmission equation through quantizing the amplitude of electromagnetic field. Compared with classic wave theory, the photon transmission equation quantizing the slowly-varying amplitude in the coupled nonlinear Schrödinger equation is obtained. In the classic wave equation, light is interpreted as energy which propagates as waves. The photon transmission equation is obtained by quantizing the slowly-varying amplitude of light, that is, the particle nature of light. The energy propagates through alternative interaction between creation and annihilation operator on photons. The transmission equations show that photons will interact with the transmission medium during propagation and be influenced by dispersion, nonlinear effect, loss, etc. By giving a trail solution and introducing a perturbation term, the transmission equation is solved for the complicated case where the dispersion, loss and nonlinear effect are all involved. A dispersion equation that should be satisfied for nontrivial solution is then obtained. From this dispersion equation, the relation between photon power and perturbation frequency is calculated and analyzed. The change of photon power in generalized field with perturbation frequency is discussed, and the influences of fiber dispersion and nonlinearity on the solution are analyzed. Some conclusions are obtained by perturbed solution and analyses of single photon transmission equation in optical fiber. It is found that photon power decreases with the increase of perturbation frequency Ω and reaches its maximum value for zero perturbation frequency. At the same time, the optical power is affected by the dispersion of the optical fiber. Photon power decreases with the group velocity dispersion coefficient far from the zero dispersion point. It is also found that photon power decreases with the increase of nonlinear coefficient. This work may contribute to the research of the properties of quantum fiber transmission system.

关键词

单模光纤/光量子/传输方程/色散

Key words

single mode optical fiber/optical quantum/transmission equation/dispersion

引用本文复制引用

陶在红,秦媛媛,孙斌,孙小菡..光纤中单光子传输方程的求解及分析∗[J].物理学报,2016,65(13):130301-1-130301-7,7.

基金项目

国家自然科学基金(批准号:60271206)资助的课题.* Project supported by the National Natural Science Foundation of China (Grant No.60271206) (批准号:60271206)

物理学报

OA北大核心CSCDCSTPCDSCI

1000-3290

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