INRS-EMT, Varennes, Québec, Canada J3X 1S2.
École technologie supérieur (ÉTS), Montreal, Québec, Canada H3C 1K3.
Phys Rev Lett. 2018 Oct 5;121(14):143901. doi: 10.1103/PhysRevLett.121.143901.
The nonlinear interaction of subcycle electromagnetic radiation with matter is the current frontier in ultrafast nonlinear optics and high-field physics. Here, we investigate nonlinear optical effects induced by intense, subcycle terahertz radiation in a doped semiconductor. We observe a truncation of the half-cycle terahertz pulse and an emission of high-frequency terahertz photons. We attribute our observations to the abrupt current drop caused by strong intervalley scattering effects. By adding an extra half-cycle terahertz pulse with opposite polarity, we monitor the evolution of the nonlinear carrier dynamics during a quasi-single-cycle pulse. Our results demonstrate the differences between nonlinear effects for subcycle and multicycle terahertz pulses. It also suggests a new approach to subcycle control of terahertz waveforms, and the generation of high-order terahertz harmonics could be realized by using multicycle pulses.
亚周期电磁辐射与物质的非线性相互作用是超快非线性光学和强场物理的当前前沿。在这里,我们研究了强亚周期太赫兹辐射在掺杂半导体中引起的非线性光学效应。我们观察到半周期太赫兹脉冲的截断和高频太赫兹光子的发射。我们将我们的观察归因于强烈的能带间散射效应引起的电流急剧下降。通过添加具有相反极性的额外半周期太赫兹脉冲,我们在准单周期脉冲期间监测非线性载流子动力学的演化。我们的结果表明了亚周期和多周期太赫兹脉冲的非线性效应之间的差异。它还为太赫兹波形的亚周期控制提供了一种新方法,并且可以通过使用多周期脉冲来实现高阶太赫兹谐波的产生。