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Dynamics and Frequency Response of Microring-Based Optical Modulator Considering Nonlinear Effects

机译:考虑非线性效应的基于微环的光调制器的动力学和频率响应

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In this paper, we analyze dynamics and frequency response of GaAs-based microring modulators at the 1.55 $mu$ m using the finite-difference time-domain method. Two types of modulation are investigated: pump-probe configuration and modulation of the coupling coefficient. The pump-probe signals are tuned at separate resonance wavelengths of the microring. Change of effective refractive index of the microring by two-photon absorption is used to modulate the probe beam. By applying probe beam in four timing configurations, it is shown that the wavelength shift of the probe depends not only on the pump intensity but also on the interaction length over which the pump and probe pulses overlap. It is also shown that free-carrier absorption increases when the temporal width of pump signal is wide enough. Modulation bandwidth of microring in the presence of nonlinear effects is investigated and it is shown that the bandwidth is in 10 GHz range. In order to increase the bandwidth of the intensity modulator, controlled coupling is used. It is shown that in this case, modulation bandwidth of waveguide-ring coupling strength becomes three times wider.
机译:在本文中,我们使用时域有限差分法分析了基于GaAs的微环调制器在1.55μm处的动力学和频率响应。研究了两种类型的调制:泵浦探针配置和耦合系数调制。泵浦探针信号在微环的单独共振波长处调谐。通过双光子吸收来改变微环的有效折射率,以调制探测光束。通过以四种定时配置施加探测光束,可以看出,探测器的波长偏移不仅取决于泵浦强度,还取决于泵浦和探测脉冲重叠的相互作用长度。还显示出当泵浦信号的时间宽度足够宽时,自由载流子吸收增加。研究了存在非线性效应时微环的调制带宽,结果表明该带宽在10 GHz范围内。为了增加强度调制器的带宽,使用了受控耦合。结果表明,在这种情况下,波导环耦合强度的调制带宽变为三倍宽。

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