论文标题
量身定制的纳米电子和光子学,带有二维材料在Terahertz频率
Tailored nano-electronics and photonics with two-dimensional materials at terahertz frequencies
论文作者
论文摘要
石墨烯的发现及其引人入胜的功能引发了对无机二维(2D)材料的前所未有的兴趣。范德华(VDW)分层材料作为石墨烯,六角硼(HBN),过渡金属二核苷(TMD)以及最近重新发现的黑色磷(BP)确实显示出一种针对纳米 - 电子和纳米 - 纳米 - 纳米型设备的工程设计的特殊技术的非凡技术,并具有出色的技术潜力临时属性。在这篇角度的文章中,我们提供了2D纳米材料的关键变革性应用,以在Terahertz频率下的纳米电子,纳米光子,光学和等离子设备的发展,突出显示出富裕的物理现象如何允许其独特的带构造工程启用这些设备的量化技术和量级科学的量级和量级科学。
The discovery of graphene and its fascinating capabilities have triggered an unprecedented interest in inorganic two-dimensional (2D) materials. Van der Waals (vdW) layered materials as graphene, hexagonal boron nitride (hBN), transition metal dichalcogenides (TMDs), and the more recently re-discovered black phosphorus (BP) indeed display an exceptional technological potential for engineering nano-electronic and nano-photonic devices and components by design, offering a unique platform for developing new devices with a variety of ad-hoc properties. In this perspective article, we provide a vision on the key transformative applications of 2D nanomaterials for the developments of nanoelectronic, nanophotonic, optical and plasmonic devices, at terahertz frequencies, highlighting how the rich physical phenomena enabled by their unique band-structure engineering can allow those devices to boost the vibrant field of quantum science and quantum technologies.