论文标题

纳米级系统中声音子的激发和检测

Excitation and detection of acoustic phonons in nanoscale systems

论文作者

Ng, Ryan C, Sachat, Alexandros El, Cespedes, Francisco, Poblet, Martin, Madiot, Guilhem, Jaramillo-Fernandez, Juliana, Xiao, Peng, Florez, Omar, Sledzinska, Marianna, Sotomayor-Torres, Clivia, Chavez-Angel, Emigdio

论文摘要

声子在材料的物理特性中起着关键作用,长期以来一直是物理学研究的话题。虽然历史上认为声子的效果被认为是一种障碍,但现代研究表明,由于它们能够将其搭配到其他激发与其他激发并因此影响固态系统的热,介电和电子特性,因此可以利用声子,从而极大地激发了语音结构的工程。纳米制作的进步使结构和声子限制甚至降低到纳米级,材料的巨大变化。尽管制造这种纳米级设备方面有所发展,但声音的正确操纵和表征仍然具有挑战性。但是,对这些过程的基本理解可以实现在拓扑语音,信息技术,传感和量子电动力学等不同领域中的关键应用,尤其是与现有的电子和光子设备集成时。在这里,我们重点介绍了七种可用的方法,用于激发和检测实心材料中的声音和振动,以及与其应用相关的优点,缺点以及其他考虑因素。然后,我们提供了针对纳米弦乐中开放挑战的观点,以及这些技术所赋予的额外理解如何使下一代语音技术应用能够实现。

Phonons play a key role in the physical properties of materials, and have long been a topic of study in physics. While the effects of phonons had historically been considered to be a hindrance, modern research has shown that phonons can be exploited due to their ability to couple to other excitations and consequently affect the thermal, dielectric, and electronic properties of solid state systems, greatly motivating the engineering of phononic structures. Advances in nanofabrication have allowed for structuring and phonon confinement even down to the nanoscale, drastically changing material properties. Despite developments in fabricating such nanoscale devices, the proper manipulation and characterization of phonons continues to be challenging. However, a fundamental understanding of these processes could enable the realization of key applications in diverse fields such as topological phononics, information technologies, sensing, and quantum electrodynamics, especially when integrated with existing electronic and photonic devices. Here, we highlight seven of the available methods for the excitation and detection of acoustic phonons and vibrations in solid materials, as well as advantages, disadvantages, and additional considerations related to their application. We then provide perspectives towards open challenges in nanophononics and how the additional understanding granted by these techniques could serve to enable the next generation of phononic technological applications.

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