optical phonon scattering

【电】光热子散射

电力



双语例句

  1. Effect of combined acoustic and optical phonon scattering in nonlinear electronic transport
    非线性电子输运中声学和光学声子的联合散射效应
  2. In our simulation model, the scattering mechanisms include acoustic phonon scattering, polar optical phonon scattering, and ionized impurity scattering and so on.
    模拟中包含的散射机理主要有声学声子散射、极性光学声子散射、电离杂质散射等。
  3. The acoustic phonon deformation potential scattering, polar optical phonon scattering, intervalley phonon deformation scattering, ionized impurity scattering and neutral impurity scattering are considered.
    在模拟中考虑了对其输运过程有着重要影响的声学声子形变势散射、极化光学声子散射、谷间声子散射、电离杂质散射以及中性杂质散射。
  4. While the ultrafast longitudinal optical ( LO) phonon scattering in AlGaN/ GaN QWs can be used for the rapid depopulation of the lower laser state, the large LO-phonon energy (-90meV) can effectively reduce the thermal population of the lasing states at higher temperatures.
    在量子阱AlGaN/GaN中纵向光学(LO)声子散射的能够迅速的消除激光低能态的布居数,GaN的大LO声子能量(约90meV),有效地减少高温下产生激光低能态的热布居。
  5. Momentum and energy relaxation, carrier-carrier scattering, intervalley and intravalley scattering, optical phonon scattering and carrier diffusion have been investigated extensively.
    动量和能量驰豫,载流子-载流子散射,谷间和谷内散射,光学声子散射,载流子扩散等机制都已被广泛研究。
  6. Two main carrier scattering mechanisms: longitudinal optical phonon scattering and Auger scattering in quantum dot are then investigated. Ultra-fast carrier dynamics are analyzed in different carrier densities and temperatures, which provides guidance for quantum dot SOA optimizations.
    其次,研究了量子点中两种主要的载流子散射机制:纵波光学声子散射和俄歇散射,并分析了不同载流子浓度和温度下量子点中的超快效应,为量子点SOA的优化设计提供了指导。