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Chirp-controlled high-harmonic and attosecond-pulse generation via coherent-wake plasma emission driven by mid-infrared laser pulses

机译:通过中红外激光脉冲驱动的相干唤醒等离子体发射,通过中红外激光脉冲驱动的啁啾控制的高谐波和抗脉冲产生

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摘要

Coherent-wake plasma emission induced by ultrashort mid-infrared laser pulses on a solid target is shown to give rise to high-brightness, high-order harmonic radiation, offering a promising source of attosecond pulses and a probe for ultrafast subrelativistic plasma dynamics. With 80-fs, 0.2-TW pulses of 3.9-mu m radiation used as a driver, optical harmonics up to the 34th order are detected, with their spectra stretching from the mid-infrared region to the extreme ultraviolet region. The harmonic spectrum is found to be highly sensitive to the chirp of the driver. Particle-incell analysis of this effect suggests, in agreement with the generic scenario of coherent-wake emission, that optical harmonics are radiated as trains of extremely short, attosecond ultraviolet pulses with a pulse-to-pulse interval varying over the pulse train. A positive chirp of the driver pulse can partially compensate for this variation in the interpulse separation, allowing harmonics of the highest orders to be generated in the plasma emission spectrum. (C) 2020 Optical Society of America
机译:通过超短半红外激光脉冲在固体目标上引起的相干唤醒等离子体发射,显示出高亮度,高级谐波辐射,提供了有前途的抗索秒源和超快亚克纳西亚血浆动力学的探针。使用80-FS,用作驾驶员的3.9-mu m辐射的0.2-tw脉冲,检测到34阶的光学谐波,其光谱从中红外区域拉伸到极端紫外线区域。发现谐波频谱对驾驶员的啁啾非常敏感。粒子投入分析这种效果暗示,与连贯发射的通用场景一致,光谐波被辐射为极短,AttoSecond紫外线脉冲的火车,其脉冲到脉冲间隔改变在脉冲系上。驱动器脉冲的正啁啾可以部分地补偿介入分离的这种变化,允许在等离子体发射光谱中产生最高订单的谐波。 (c)2020美国光学学会

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