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Picosecond x-ray studies of coherent folded acoustic phonons in a periodic semiconductor heterostructure

机译:周期半导体异质结构中相干折叠声子宫的PICOSECOND X射线研究

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Zone folded coherent acoustic phonons were generated in a multilayered GaSb/InAs epitaxial heterostructure via rapid heating by femtosecond laser pulses. These phonons were probed by means of ultrafast x-ray diffraction. Phonons both from the fundamental acoustic branch and the first back-folded branch were detected. This represents the first clear evidence for phonon branch folding based directly on the atomic motion to which x-ray diffraction is sensitive. From a comparison of the measured phonon-modulated x-ray reflectivity with simulations, evidence was found for a reduction of the laser penetration depth. This reduction can be explained by the self-modulation of the absorption index due to photogenerated free carriers.
机译:通过飞秒激光脉冲快速加热,在多层气体/ INAS外观结构中产生区域折叠相干声子位。通过超快X射线衍射探测这些声子。检测来自基本声学分支和第一后折叠分支的声子。这代表了直接基于X射线衍射敏感的原子运动的声子分支折叠的第一明确证据。从测量的声子调制的X射线反射率与模拟的比较,发现了用于减少激光穿透深度的证据。这种减少可以通过光发性的游离载体的吸收指数的自我调节来解释。

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