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Metal-like heat conduction in laser-excited InSb probed by picosecond time-resolved x-ray diffraction

机译:皮秒时间分辨X射线衍射探测激光激发的InSb中的类金属热传导

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摘要

A semiconductor (InSb) showed transient metal-like heat conduction after excitation of a dense electron-hole plasma via short and intense light pulses. A related ultrafast strain relaxation was detected using picosecond time-resolved x-ray diffraction. The deduced heat conduction was, by a factor of 30, larger than the lattice contribution. The anomalously high heat conduction can be explained once the contribution from the degenerate photocarrier plasma is taken into account. The magnitude of the effect could provide the means for guiding heat in semiconductor nanostructures. In the course of this work, a quantitative model for the carrier dynamics in laser-irradiated semiconductors has been developed, which does not rely on any adjustable parameters or ad hoc assumptions. The model includes various light absorption processes (interband, free carrier, two photon, and dynamical Burstein-Moss shifts), ambipolar diffusion, energy transport (heat and chemical potential), electrothermal effects, Auger recombination, collisional excitation, and scattering (elastic and inelastic). The model accounts for arbitrary degrees of degeneracy.
机译:半导体(InSb)在通过短而强的光脉冲激发密集的电子空穴等离子体后,表现出类似金属的瞬态导热。使用皮秒时间分辨的X射线衍射检测到相关的超快应变松弛。推导的热传导比晶格贡献大30倍。一旦考虑了退化的光载流子等离子体的贡献,就可以解释异常高的热传导。效应的大小可以提供在半导体纳米结构中引导热量的手段。在这项工作的过程中,已经建立了激光辐照半导体中载流子动力学的定量模型,该模型不依赖任何可调整的参数或临时假设。该模型包括各种光吸收过程(带间,自由载流子,两个光子和动态Burstein-Moss位移),双极扩散,能量传输(热和化学势),电热效应,俄歇复合,碰撞激发和散射(弹性和无弹性)。该模型说明了任意程度的简并性。

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