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A study of the origin and applications of nonlinear polarization rotation in semiconductor optical amplifiers

机译:半导体光放大器中非线性偏振旋转的起源及应用研究

摘要

In order to fully exploit the capacity of optical networks it is necessary to develop alloptical signal processing techniques. One device which can be used for this purpose is the Semiconductor Optical Amplifier (SOA). A lot of research has been devoted to this device. This work concentrates mainly on the nonlinearities in the device to perform alloptical processes such as switching and wavelength conversion. The main nonlinearities that have been considered are cross-phase modulation, cross-gain modulation and fourwave mixing. However, another type of nonlinearity has recently come to attention, which is due to the intensity dependent rotation in the state of polarization of a signal injected into the SOA. This phenomenon is called Nonlinear Polarization Rotation (NPR). The exact physical origin of this effect is yet to be determined.ududThe physical origins behind the NPR effect are examined using several novel experimental techniques. Polarization dependence of the gain and birefringence are found to be contributing factors. A model is also presented in order to develop an understanding of the physical dynamics occurring in the SOA. This is used to assess the potential of the SOA as a wavelength converter based on NPR. For the first time a detailed investigation of the optimum experimental setup for such an operation is presented. Wavelength conversion based on NPR is shown to have several advantages over XGM. Results are presented to examine the polarization dependence of pulse propagation through the SOA using an accurate and complete measurement technique. A large polarization dependence is present at high intensities. The potential speed of NPR in the SOA is assessed using an original method. This work is based on polarization resolved four-wave mixing. The polarization dependence of several gain dynamics in the SOA are found using this technique. The potential of ultra-fast all-optical signal processing based on NPR in the SOA is demonstrated.
机译:为了充分利用光网络的容量,必须开发全光信号处理技术。可以用于此目的的一种设备是半导体光放大器(SOA)。已经对该设备进行了大量研究。这项工作主要集中在器件的非线性上,以执行诸如开关和波长转换之类的全光学过程。已经考虑的主要非线性是交叉相位调制,交叉增益调制和四波混频。然而,近来另一种非线性类型引起注意,这是由于在注入到SOA中的信号的极化状态下依赖于强度的旋转。这种现象称为非线性极化旋转(NPR)。此效应的确切物理起源尚未确定。 ud ud使用几种新颖的实验技术检查了NPR效应背后的物理起源。发现增益和双折射的偏振相关性是促成因素。还提出了一个模型,以加深对SOA中发生的物理动力学的理解。这用于评估SOA作为基于NPR的波长转换器的潜力。首次提出了对这种操作的最佳实验装置的详细研究。与NGM相比,基于NPR的波长转换具有许多优势。提出了使用精确而完整的测量技术检查通过SOA传播的脉冲的偏振相关性的结果。在高强度下存在很大的偏振依赖性。使用原始方法评估SOA中NPR的潜在速度。这项工作基于极化分解的四波混频。使用这种技术可以发现SOA中几个增益动态的极化相关性。演示了在SOA中基于NPR的超快速全光信号处理的潜力。

著录项

  • 作者

    Kennedy Brendan F.;

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  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 en
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