论文标题
除了普通的大声倾角效应:声子和声子介导的Bloch增益中的量子现象
Beyond the ordinary acoustoelectric effect: superluminal phenomena in the acoustic realm and phonon-mediated Bloch gain
论文作者
论文摘要
已经表明,连贯的声子可以用作控制和增强纳米结构材料的光电和传输特性的有效工具。最近的研究表明,在半导体异质结构中,声音子和快速移动载体的相互作用可能伴随着引起普通和诱导的Cherenkov效应的电子音波不稳定性。但是,这种不稳定性的发展仍然知之甚少。我们的研究表明,除了Cherenkov不稳定性之外,其他超音速现象在由声波波驱动的小型半导体超级晶格(SLS)中可能进行非平衡电荷转运。使用分叉理论的半经典非扰动方法和元素,我们找到了动态不稳定性(分叉)的条件,这些条件是由超音速电子对特定SL语音发射的发射引起的,以及它们对电子的背部作用。值得注意的是,潜在的辐射机制与金兹堡 - 弗兰克 - 塔姆理论完全连接到正常或异常的多普勒效应。还讨论了与SL的空间周期性结构传播的电子束的形成有关的诱导多普勒效应的出现。当声波的幅度超过一定阈值时,系统中产生的动力不稳定性表现为漂移速度逆转,声音衰减的共振和绝对负面的迁移率。我们证明,发现的静光多普勒现象可用于可调宽带扩增和GHz-THZ电磁波的生成,这为开发新型的声音设备创造了基础。
It has been shown that coherent phonons can be used as a potent tool for controlling and enhancing optoelectronic and transport properties of nanostructured materials. Recent studies revealed that interaction of acoustic phonons and fast-moving carriers in semiconductor heterostructures can be accompanied by electron-phonon instabilities that cause ordinary and induced Cherenkov effects. However, the development of such instabilities is still poorly understood. Our study shows that other supersonic phenomena, beyond the Cherenkov instability, are possible for non-equilibrium charge transport in the miniband semiconductor superlattices (SLs) driven by an acoustic plane wave. Using semiclassical nonperturbative methods and elements of the bifurcation theory, we find the conditions for the onset of dynamical instabilities (bifurcations) which are caused by the emission of specific SL phonons by supersonic electrons, and their back action on the electrons. Notably, the underlying radiation mechanism is connected either to normal or anomalous Doppler effects in full accordance with the Ginzburg-Frank-Tamm theory. The appearance of induced Doppler effects is also discussed in relation to the formation of electron bunches propagating through the spatially periodic structure of the SL. When the amplitude of the acoustic wave exceeds certain threshold, the dynamical instabilities developed in the system are manifested as drift velocity reversals, resonances in sound attenuation and absolute negative mobility. We demonstrate that the discovered superluminal Doppler phenomena can be utilized for tunable broadband amplification and generation of GHz-THz electromagnetic waves, which creates a ground for development of novel phononic devices.