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Investigation of PPLN-Based PSAs for High-Gain Optical Amplification

机译:基于PPLN的PSA用于高增益光学放大的研究

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摘要

In this paper, different configurations of phase-sensitive amplifiers (PSAs) built with periodically poled lithium niobate (PPLN) devices are theoretically and numerically investigated, focusing on their application for amplification in optical communications systems. Single- and dual-pump configurations of one-, two-, and four-mode PSAs are discussed. For each configuration, analytical expressions for the maximum and minimum gain of the amplifiers are provided, showing the influence of the power of the pump and signal waves, as well as the length and efficiency of the PPLN waveguide. The analytical expressions are numerically validated by solving the coupled differential equations describing the nonlinear interactions in the PPLN. The obtained results show that the gain of all PSA configurations exponentially increases with the power of the pump waves, and the length and efficiency of the PPLN device, whereas it is almost independent of the power of the signal wave. In addition, it is shown in this paper that PSA configurations where an intermediate interaction is necessary to generate waves at the second-harmonic band have a gain penalty of 6 dB. It is also shown that no significant difference in terms of gain bandwidth is observed for the single- and dual-pump configurations of two-mode PSAs with an intermediate interaction. Finally, it is shown that a four-mode PSA can only be implemented under very strict conditions, with no gain advantage over two-mode PSAs.
机译:本文从理论和数值上研究了采用周期性极化铌酸锂(PPLN)器件构建的相敏放大器(PSA)的不同配置,重点是它们在光通信系统中的放大应用。讨论了单模,双模和四模PSA的单泵和双泵配置。对于每种配置,都提供了放大器最大和最小增益的解析表达式,显示了泵浦和信号波功率的影响以及PPLN波导的长度和效率。通过求解描述PPLN中非线性相互作用的耦合微分方程,可以对分析表达式进行数值验证。获得的结果表明,所有PSA配置的增益都随泵浦波的功率,PPLN器件的长度和效率呈指数增长,而几乎与信号波的功率无关。此外,本文表明,PSA配置(其中必须进行中间相互作用才能在第二谐波频带生成波)具有6 dB的增益损失。还显示出,对于具有中间相互作用的双模PSA的单泵和双泵配置,在增益带宽方面未观察到显着差异。最后,显示出四模式PSA只能在非常严格的条件下实施,与两模式PSA相比没有任何增益优势。

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