论文标题
关于从固态媒体高谐波一代中过渡偶极期的(联合国)重要性
On the (un)importance of the transition-dipole phase in the high-harmonic generation from solid state media
论文作者
论文摘要
固态高谐波一代(HHG)继续引起很多兴趣。从理论和仿真的角度来看,两个问题仍然开放。第一个是所谓的过渡偶极相问题。已经认识到,偶极子必须被视为复杂值的数量,并且必须包括其相应的浆果连接,以确保相位的不变性。但是,尽管这已经成功地用于低维系统,但完全矢量和三维模拟仍然具有挑战性。第二个问题涉及高谐波反应的对称性,当模拟有时无法尊重晶体材料的对称性时。这项工作借助于HHG模拟方法解决了这两个问题,a)显然没有过渡偶极相问题,b)不需要计算偶极矩,c)可以说明整个Brillouin区域的贡献,d)忠实地保留了模拟晶体材料的对称性。我们使用该方法表明,高谐波来源分布在整个布里群区域,并带有各种相移,从而产生显着的取消。结果,要正确捕获材料对称性的模拟响应,必须包括整个布里群区域的贡献。我们的结果对许多HHG应用具有重要意义,包括全光条带偶极子重构。
Solid-state high-harmonic generation (HHG) continues to attract a lot of interest. From the theory and simulation standpoint, two issues are still open; The first is the so-called transition-dipole phase problem. It has been recognized that the dipoles must be treated as complex-valued quantities, and that their corresponding Berry connections must be included to ensure phase-gauge invariance. However, while this has been successfully implemented for lower-dimensional systems, fully vectorial and three-dimensional simulations remain to be challenging. The second issue concerns the symmetry of the high-harmonic response, when simulations sometimes fail to honor the symmetry of the crystalline material. This work addresses both of these problems with the help of a HHG-simulation approach which a) is manifestly free of the transition-dipole phase problem, b) does not require calculation of dipole moments, c) can account for the contributions from the entire Brillouin zone, d) faithfully preserves the symmetry of the simulated crystalline material. We use the method to show that high-harmonic sources are distributed throughout the Brillouin zone with various phase-shifts giving rise to significant cancellations. As a consequence, for the simulated response to correctly capture the material symmetry, contributions from the entire Brillouin zone must be included. Our results have important implications for a number of HHG applications, including all-optical bandand dipole-reconstruction.