论文标题
液体中高谐波产生的Ab-Initio群集方法
Ab-initio cluster approach for high-harmonic generation in liquids
论文作者
论文摘要
高谐波产生(HHG)发生在物质的所有阶段。在气态原子和分子培养基中,它已经进行了广泛的研究,并且非常受到理解。在固体研究中仍在进行中,但是对于主要的微观HHG机制构成了共识。另一方面,在液体中,没有建立的理论尚未退出,并为气体和固体开发的方法通常是不可能的,从而阻碍了我们当前的理解。我们在这里开发了一种强大可靠的基于AB-Initio群集的方法,用于描述各向同性散装液体与强烈激光脉冲之间的非线性相互作用。该方案基于时间依赖性密度功能理论,并利用了几个近似值,使其在现实系统中可行但准确。我们证明了我们在水,氨和甲烷液体中计算的方法,并比较了极性和非极性液体的特征反应。我们确定了液态甲烷的HHG光谱中的独特特征,可用于其化学和物理特性的超快光谱:(i)15-17EV的结构最小值,以及(ii)在敏感区域中的形状良好,使人联想到形状共振。我们的结果为液体中HHG的可访问计算铺平了道路,并说明了液体系统的独特非线性性质。
High harmonic generation (HHG) takes place in all phases of matter. In gaseous atomic and molecular media, it has been extensively studied and is very well-understood. In solids research is ongoing, but a consensus is forming for the dominant microscopic HHG mechanisms. In liquids on the other hand, no established theory yet exit and approaches developed for gases and solids are generally inapplicable, hindering our current understanding. We develop here a powerful and reliable ab-initio cluster-based approach for describing the nonlinear interactions between isotropic bulk liquids and intense laser pulses. The scheme is based on time-dependent density functional theory and utilizes several approximations that make it feasible yet accurate in realistic systems. We demonstrate our approach with HHG calculations in water, ammonia, and methane liquids, and compare the characteristic response of polar and non-polar liquids. We identify unique features in the HHG spectra of liquid methane that could be utilized for ultrafast spectroscopy of its chemical and physical properties: (i) a structural minima at 15-17eV, and (ii) a well-like shape in the perturbative region that is reminiscent of a shape resonance. Our results pave the way to accessible calculations of HHG in liquids and illustrate the unique nonlinear nature of liquid systems.