论文标题
使用偏振型强场上的固体表面上的手性高谐波产生和光谱法
Chiral high-harmonic generation and spectroscopy on solid surfaces using polarization-tailored strong fields
论文作者
论文摘要
固体中的强场方法可以实现超快非线性光谱法的新策略,并为互惠和真实空间中凝结物质的电子特性提供了全光见解。此外,固态媒体还使用修改的目标或量身定制的激发场来控制高谐波生成的前所未有的可能性。在这里,我们合并了这些重要点,并证明了与极化匹配的激发场,用于表面的手性电子性质光谱。对于分别在硅二氧化硅和氧化镁表面的结构螺旋性和终止介导的铁磁序的敏感性得到了证明。现在,从固体样品中产生的圆极化辐射可以使固体中强场光谱法的武器库中添加基本的对称性能。连同其固有的时间(飞秒)分辨率和非共振宽带光谱,对高谐波的极化控制可以照亮表面,埋入层或薄膜的超快和强场动力学。
Strong-field methods in solids enable new strategies for ultrafast nonlinear spectroscopy and provide all-optical insights into the electronic properties of condensed matter in reciprocal and real space. Additionally, solid-state media offers unprecedented possibilities to control high-harmonic generation using modified targets or tailored excitation fields. Here we merge these important points and demonstrate circularly-polarized high-harmonic generation with polarization-matched excitation fields for spectroscopy of chiral electronic properties at surfaces. The sensitivity of our approach is demonstrated for structural helicity and termination-mediated ferromagnetic order at the surface of silicon-dioxide and magnesium oxide, respectively. Circularly polarized radiation emanating from a solid sample now allows to add basic symmetry properties as chirality to the arsenal of strong-field spectroscopy in solids. Together with its inherent temporal (femtosecond) resolution and non-resonant broadband spectrum, the polarization control of high harmonics from condensed matter can illuminate ultrafast and strong field dynamics of surfaces, buried layers or thin films.