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首页> 外文期刊>Optical and quantum electronics >Subcycle dynamics of electron-hole pairs and high-harmonic generation in bulk diamond subjected to intense femtosecond laser pulse
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Subcycle dynamics of electron-hole pairs and high-harmonic generation in bulk diamond subjected to intense femtosecond laser pulse

机译:飞秒激光脉冲下大块金刚石中电子-空穴对的子周期动力学和高谐波生成

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摘要

We present calculation of photoexcitation and high-harmonic generation in bulk diamond induced by intense near-infrared laser pulse of photon energy 1.55 eV, time duration of 15 fs and peak field strength F = 0.4 V/angstrom. Depending on the laser polarization direction, the pulsed irradiation creates electron-hole pairs and transient density fluctuations in a localized region of the crystal momentum space. As a consequence energetic inter- and intra-band harmonics are generated with alternating phase during each half-cycle of the driving pulse. The corresponding inter- and intra-band currents are in definite phase relation with the laser pulse, reflecting the build-up of coherent superposition of population between valence and conduction bands, and the accelerated motion of charge carriers in their respective bands.
机译:我们目前计算光子能量为1.55 eV,持续时间为15 fs,峰值场强F = 0.4 V /埃的强近红外激光脉冲引起的大块钻石中光激发和高谐波产生的计算。取决于激光偏振方向,脉冲辐射在晶体动量空间的局部区域中产生电子-空穴对和瞬态密度波动。结果,在驱动脉冲的每个半周期期间,产生具有交替相位的高能带间和带内谐波。相应的带内和带内电流与激光脉冲具有明确的相位关系,反映出价带和导带之间的人口相干叠加的建立以及电荷载流子在各自带中的加速运动。

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