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Strain effect on the orientation-dependent harmonic spectrum of monolayer aluminum nitride
Authors:ZiWen Wang  ShiCheng Jiang  GuangLu Yuan  Tong Wu  Cheng Li  Chen Qian  Cheng Jin  Chao Yu  WeiJie Hua  RuiFeng Lu
Affiliation:Department of Applied Physics;State Key Laboratory of Molecular Reaction Dynamics
Abstract:In this study, we theoretically investigate the strain effect on the orientation-dependent high-order harmonic generation(HHG) of monolayer aluminum nitride(Al N) by solving the multiband semiconductor Bloch equations in strong laser fields. Our simulations denote that the efficiency of the orientation-dependent HHG is considerably enhanced when a 15% biaxial tensile strain is applied to Al N, which is attributed to the downshifting energy level of the conduction band. Furthermore, the odd-even feature in the orientation-dependent high harmonic spectra owing to the strain is considerably different when compared with that in the case without strain. The enhanced quantum interference between different energy bands in strained Al N around the Γ-M direction is responsible for the observed odd-even distributions of the orientation-dependent HHG. This study helps to better understand the HHG in solids by tuning their electronic structures.
Keywords:ultrafast strong laser field  high-order harmonic generation  monolayer material  strain modulation  band structure  transition dipole moment
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