High Harmonics and Isolated Attosecond Pulses from MgO

Z. Nourbakhsh, N. Tancogne-Dejean, H. Merdji, Á. Rubio
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引用次数: 14

Abstract

On the basis of real-time ab initio calculations, we study the non-perturbative interaction of two-color laser pulses with MgO crystal in the strong field regime to generate isolated attosecond pulse from high-harmonic emissions from MgO crystal. In this regard, we examine the impact of incident pulse characteristics such as its shape, intensity, and ellipticity as well as the consequence of the crystal anisotropy on the emitted harmonics and their corresponding isolated attosecond pulses. Our calculations predict the creation of isolated attosecond pulses with a duration of ~ 300 attoseconds; in addition, using elliptical driving pulses, the generation of elliptical isolated attosecond pulses is shown. Our work prepares the path for all solid-state compact optical devices offering perspectives beyond traditional isolated attosecond pulse emitted from atoms.
来自MgO的高次谐波和孤立阿秒脉冲
在实时从头计算的基础上,我们研究了双色激光脉冲与MgO晶体在强场域中的非微扰相互作用,从而从MgO晶体的高谐波发射中产生孤立的阿秒脉冲。在这方面,我们研究了入射脉冲特性的影响,如其形状、强度和椭圆性,以及晶体各向异性对发射谐波及其相应的孤立阿秒脉冲的影响。我们的计算预测将产生持续时间约为300阿秒的孤立阿秒脉冲;此外,利用椭圆驱动脉冲,给出了椭圆隔离阿秒脉冲的产生。我们的工作为所有固态紧凑型光学器件铺平了道路,提供了超越传统原子发射的孤立阿秒脉冲的视角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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