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Even harmonic generation in isotropic media of dissociating homonuclear molecules

机译:离解同核分子在各向同性介质中甚至产生谐波

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摘要

Isotropic gases irradiated by long pulses of intense IR light can generate very high harmonics of the incident field. It is generally accepted that, due to the symmetry of the generating medium, be it an atomic or an isotropic molecular gas, only odd harmonics of the driving field can be produced. Here we show how the interplay of electronic and nuclear dynamics can lead to a marked breakdown of this standard picture: a substantial part of the harmonic spectrum can consist of even rather than odd harmonics. We demonstrate the effect using ab-initio solutions of the time-dependent Schrödinger equation for and its isotopes in full dimensionality. By means of a simple analytical model, we identify its physical origin, which is the appearance of a permanent dipole moment in dissociating homonuclear molecules, caused by light-induced localization of the electric charge during dissociation. The effect arises for sufficiently long laser pulses and the region of the spectrum where even harmonics are produced is controlled by pulse duration. Our results (i) show how the interplay of femtosecond nuclear and attosecond electronic dynamics, which affects the charge flow inside the dissociating molecule, is reflected in the nonlinear response, and (ii) force one to augment standard selection rules found in nonlinear optics textbooks by considering light-induced modifications of the medium during the generation process.
机译:长时间的强红外光脉冲照射的各向同性气体会在入射场中产生很高的谐波。人们普遍认为,由于产生介质的对称性,无论是原子气体还是各向同性的分子气体,都只能产生驱动场的奇次谐波。在这里,我们展示了电子和核动力学的相互作用如何导致该标准图像的明显崩溃:谐波频谱的很大一部分可以由偶数谐波而不是奇数谐波组成。我们证明了使用依时Schrödinger方程及其同位素的从头算解的效果。通过一个简单的分析模型,我们确定其物理起源,这是在离解同核分子过程中永久性偶极矩的出现,这是由光诱导的离解过程中电荷的局部化所引起的。对于足够长的激光脉冲会产生这种影响,并且产生均匀谐波的频谱区域由脉冲持续时间控制。我们的结果(i)显示飞秒核和阿秒电子动力学的相互作用如何影响解离分子内部的电荷流,并在非线性响应中得到反映,并且(ii)强迫一个以增强非线性光学教科书中的标准选择规则通过在生成过程中考虑光诱导的介质修饰。

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