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Narrow-band detection of propagating coherent acoustic phonons in piezoelectric InGaN/GaN multiple-quantum wells

机译:压电InGaN / GaN多量子阱中传播相干声子的窄带检测

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The authors demonstrated that the piezoelectric superlattice, can serve as narrow-band detectors for propagating coherent longitudinal acoustic phonons at multiple frequencies corresponding to the spatial frequency of the superlattice and its higher harmonics, and its detection bandwidth is determined by the total structure width. By optically exciting a broadband propagating longitudinal acoustic pulse from a thin Ni film, the authors studied the acoustic spectral sensitivity function of a ten-period In_(0.12)Ga_(0.88)N/GaN multiple quantum well. Because the barriers (19 nm) and wells (3.6 nm) are of different widths, the second detection band, corresponding to the second harmonic of the fundamental frequency, can be resolved.
机译:作者证明,压电超晶格可以用作窄带检测器,用于在与超晶格的空间频率及其高次谐波相对应的多个频率下传播相干纵向声子,其检测带宽由总结构宽度决定。通过从镍薄膜光学激发宽带传播的纵向声脉冲,作者研究了一个十周期In_(0.12)Ga_(0.88)N / GaN多量子阱的声谱灵敏度函数。因为势垒(19 nm)和阱(3.6 nm)具有不同的宽度,所以可以解析与基频的二次谐波相对应的第二检测带。

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