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Exact Modelling of the Optical Bistability in Ferroelectics via Two-Wave Mixing: A System with Full Nonlinearity

机译:通过双波混合的铁纤维精异性的精确建模:具有完全非线性的系统

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In this paper, we provide a complete mathematical model of the phenomenon of optical bistability (OB) resulting from the degenerate two-wave mixing (TWM) process of laser beams interacting with a single nonlinear layer of ferroelectric material. Starting with the electromagnetic wave equation for optical wave propagating in nonlinear media, a nonlinear coupled wave (CW) system with both self-phase modulation (SPM) and cross-phase modulation (XPM) sources of nonlinearity are derived. The complete CW system with full nonlinearity is solved numerically and a comparison between both the cases of with and without SPM at various combinations of design parameters is given. Furthermore, to provide a reliable theoretical model for the OB via TWM process, the results obtained theoretically are compared with the available experimental data. We found that the nonlinear system without SPM fails to predict the bistable response at lower combinations of the input parameters. However, at relatively higher values, the solution without SPM shows a reduction in the switching contrast and period in the OB response. A comparison with the experimental results shows better agreement with the system with full nonlinearity.
机译:在本文中,我们提供了一种完整的数学模型,其光学双波形混合(OB)的现象是由regenerate两波混合(TWM)的激光束与铁电材料层相互作用。从非线性介质中传播的光波的电磁波方程开始,推导了具有自相调制(SPM)和互相调制(XPM)非线性的非线性耦合波(CW)系统。为具有完全非线性的完整CW系统在数值上解决,给出了在各种设计参数的各种组合中的带和没有SPM的情况之间的比较。此外,为了通过TWM过程提供可靠的理论模型,理论上获得的结果与可用的实验数据进行比较。我们发现,没有SPM的非线性系统不能预测输入参数的较低组合的双稳态响应。然而,在相对较高的值下,没有SPM的溶液显示出在OB响应中的切换对比度和时段的降低。与实验结果的比较表现出与具有完全非线性的系统达成更好的协议。

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