声子
电子
皮秒
放松(心理学)
布里渊区
硅
原子物理学
半导体
激发态
材料科学
凝聚态物理
物理
光电子学
激光器
光学
量子力学
心理学
社会心理学
作者
Zhenyu Wang,Zhenfa Zheng,Qijing Zheng,Jin Zhao
标识
DOI:10.1021/acs.jpclett.4c00591
摘要
The relaxation of hot electrons in semiconductors is pivotal for both energy harvesting processes and optoelectronics. Utilizing a self-developed non-adiabatic molecular dynamics simulation approach in the momentum space (NAMD_k), we have examined the dynamics of hot electrons in silicon. Whether excited from the Γ or L point, the relaxation dynamics exhibit two distinct stages. Initially, within 100 fs, electrons scatter with phonons throughout the Brillouin zone. Subsequently, over a few picoseconds, they further relax toward the conduction band minimum as a whole. This picture of hot electron relaxation is highly consistent with the quasi-equilibrium hot electron ensemble (HEE) concept. Throughout the hot electron relaxation process, energy transfer to phonons is efficient, leading to time-dependent phonon excitation, which is thoroughly analyzed. This investigation provides a novel perspective on hot electron relaxation in silicon, which holds substantive implications for the realm of photovoltaic and optoelectronic device applications.
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