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Second harmonic wave generation from Joule heating in layered organic conductors

机译:从层状有机导体中的焦耳加热产生二次谐波波

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The amplitude of a second harmonic wave (SHW) generated from Joule heating as a heat source in organic conductor beta-(BEDT-TTF)(2)IBr2 is analyzed as a function of the magnetic field strength and its orientation with respect to the plane of the layers. Angular oscillations of the SHW amplitude are correlated with the angular changes of in-plane conductivity that arise from the periodic dependence of charge carriers velocity on the field orientation. It was found that the nonlinear effect of wave generation leads to a shift between the position of the peaks of the wave amplitude and in-plane conductivity. This allows an important information on the parameter values of organic conductors as well as wave velocity to be obtained. Magnetic field dependence shows that the wave is not strongly attenuated with increasing field and might give insights on the interactions between the electromagnetic, temperature and acoustic oscillations. We found that these observations are completely different compared to those of linear acoustic wave generation. It has been shown that the necessary conditions for observing the nonlinear acoustic wave generation are fulfilled in a wide range of fields and angles that allow the acoustic properties of organic conductors to be studied in detail.
机译:从焦耳加热产生的第二次谐波(SHW)的幅度作为有机导体β-(BEDT-TTF)(2)IBR2中的热源,作为磁场强度的函数及其相对于平面的定向层。 SHW振幅的角度振荡与面内导电性的角度变化相关,其从磁场取向上的电荷载波速度的周期性依赖性产生。发现波浪产生的非线性效应导致波幅和面内导电峰的位置之间的偏移。这允许有有机导体的参数值以及要获得的波速度的重要信息。磁场依赖表明,波浪不敏能地衰减,并且可能对电磁,温度和声学振荡之间的相互作用提供见解。我们发现,与线性声波产生相比,这些观察结果完全不同。已经表明,用于观察非线性声波产生的必要条件在宽范围的场和角度中满足允许详细研究有机导体的声学性质的角度。

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