论文标题
与微凸起的布里鲁因光散射光谱法观察到的共绕雷利和塞沙瓦波的干扰
Interference of co-propagating Rayleigh and Sezawa waves observed with micro-focussed Brillouin Light Scattering Spectroscopy
论文作者
论文摘要
我们使用微脉电的Brillouin光散射光谱($μ$ BLS)在GHz频率下的Si底物上的GAN层中研究表面声波(SAWS)。此外,我们讨论了锯$ $ $ bls的概念,并表明可以测量锯激发和传播的关键参数。我们研究了广泛的激发参数,并观察到瑞利和塞沙瓦波在相同的频率上同时激发。这些共同传播波的空间分辨测量显示出周期性的模式,这证明了它们连贯的干扰。从空间声子模式的周期性来看,已经确定了两个波之间的波形差异并将其与分散关系进行了比较。这种共同传播的声子的概念可用于产生具有时间无关的空间变化的声学或磁弹性场,类似于使用反传播波的情况。然而,共同传播的锯具有波动矢量的明确定义的方向,因此具有有限的声子角动量,提供了新的机会,例如用于角动量转换实验。
We use micro-focussed Brillouin light scattering spectroscopy ($μ$BLS) to investigate surface acoustic waves (SAWs) in a GaN layer on a Si substrate at GHz frequencies. Furthermore, we discuss the concept of $μ$BLS for SAWs and show that the crucial parameters of SAW excitation and propagation can be measured. We investigate a broad range of excitation parameters and observe that Rayleigh and Sezawa waves are excited simultaneously at the same frequency. Spatially resolved measurements of these co-propagating waves show a periodic pattern, which proves their coherent interference. From the periodicity of the spatial phonon patterns, the wavevector difference between the two waves has been identified and compared to the dispersion relation. This concept of co-propagating phonons might be used to produce acoustic or magneto-elastic fields with a time-independent spatial variation similar to the situations realized using counter-propagating waves. However, co-propagating SAW have a well defined direction of the wave vector and thus, posses a finite phonon angular momentum which offers new opportunities, e.g. for angular momentum conversion experiments.