论文标题
有限系统的高谐波产生的相关效应
Correlation effects in high-harmonic generation from finite systems
论文作者
论文摘要
使用Hubbard模型,我们研究了有限和批量系统的高级谐波产生过程(HHG)的过程如何通过超出平均场电子电子相关性来修改。发现了HHG信号的有限大小增强,并归因于晶格边缘的电子反向散射。此外,随着电子电子相关强度的提高,发现HHG光谱的高频状态的增强。这归因于电子之间的现场库仑排斥,这引起了电子的局部箭量运动。有限的晶格增强功能主导了HHG光谱,从几个谐波顺序到一个阈值,相关性增强主导的阈值。该阈值取决于相关程度,并降低到低频方案中,以增加电子电子相关性。这据说随着接近高电子电子相关的Mott绝缘子极限,对电子动力学的有限尺寸效应变得可以忽略不计。
Using the Hubbard model we study how the process of high-order harmonic generation (HHG) is modified by beyond mean-field electron-electron correlation for both finite and bulk systems. A finite-size enhancement of the HHG signal is found and attributed to electrons backscattering off the lattice edges. Additionally, with increasing strength of the electron-electron correlation an enhancement of the high-frequency regime of the HHG spectrum is found. This is attributed to the on-site Coulomb repulsion between electrons giving rise to a localized quiver motion of the electrons. The finite-lattice enhancement dominates the HHG spectra from a few harmonic orders until a threshold from which the correlational enhancement dominates. This threshold is determined by the degree of correlation and decreases into the low-frequency regime for increasing electron-electron correlation. This infers that as the Mott insulator limit of high electron-electron correlation is approached, the finite-size effect on the electron dynamics becomes negligible.