首页> 外文期刊>Photonics Journal, IEEE >Terahertz Waveforms Generated by Second-Order Nonlinear Polarization in GaAs/AlAs Coupled Multilayer Cavities Using Ultrashort Laser Pulses
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Terahertz Waveforms Generated by Second-Order Nonlinear Polarization in GaAs/AlAs Coupled Multilayer Cavities Using Ultrashort Laser Pulses

机译:利用超短激光脉冲在GaAs / AlAs耦合多层腔中由二阶非线性极化产生的太赫兹波形

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Temporal terahertz waveforms generated from GaAs/AlAs coupled multilayer cavity structures were simulated and compared with experimental results. Femtosecond laser pulses covering two cavity-mode frequencies were used for the difference frequency generation (DFG) in the terahertz region. The Fourier components dependent on the frequency and spatial position were determined for the second-order nonlinear polarization induced by a 100-fs Gaussian pulse injection. When the temporal waveform was simulated using the Fourier components, the oscillating behavior due to the efficient DFG of the two cavity modes was clearly observed after the initial ultrafast response near the incident surface. Assuming the exponential decay of signal sensitivity in the high-frequency region, the simulated results were consistent with the experimentally measured ones for coupled cavity structures grown on (113)B GaAs substrates.
机译:GaAs / AlAs耦合多层腔结构产生的时间太赫兹波形进行了仿真,并与实验结果进行了比较。飞秒激光脉冲覆盖了两个腔模式频率,用于太赫兹区域的差分频率生成(DFG)。对于由100-fs高斯脉冲注入引起的二阶非线性极化,确定了取决于频率和空间位置的傅立叶分量。当使用傅立叶分量模拟时间波形时,在入射表面附近的初始超快响应之后,可以清楚地观察到由于两个腔模的有效DFG引起的振荡行为。假设信号灵敏度在高频区域呈指数衰减,则模拟结果与在(113)B GaAs衬底上生长的耦合腔结构的实验测量结果一致。

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