Munkhbat Battulga, Wróbel Piotr, Antosiewicz Tomasz J, Shegai Timur O
Department of Physics, Chalmers University of Technology, SE-412 96 Gothenburg, Sweden.
Department of Photonics Engineering, Technical University of Denmark, 2800 Kongens Lyngby, Denmark.
ACS Photonics. 2022 Jul 20;9(7):2398-2407. doi: 10.1021/acsphotonics.2c00433. Epub 2022 Jun 7.
Transition metal dichalcogenides (TMDs) attract significant attention due to their remarkable optical and excitonic properties. It was understood already in the 1960s and recently rediscovered that many TMDs possess a high refractive index and optical anisotropy, which make them attractive for nanophotonic applications. However, accurate analysis and predictions of nanooptical phenomena require knowledge of dielectric constants along both in- and out-of-plane directions and over a broad spectral range, information that is often inaccessible or incomplete. Here, we present an experimental study of optical constants from several exfoliated TMD multilayers obtained using spectroscopic ellipsometry in the broad range of 300-1700 nm. The specific materials studied include semiconducting WS, WSe, MoS, MoSe, and MoTe, as well as in-plane anisotropic ReS and WTe and metallic TaS, TaSe, and NbSe. The extracted parameters demonstrate a high index ( up to ∼4.84 for MoTe), significant anisotropy ( - ≈ 1.54 for MoTe), and low absorption in the near-infrared region. Moreover, metallic TMDs show potential for combined plasmonic-dielectric behavior and hyperbolicity, as their plasma frequency occurs at around ∼1000-1300 nm depending on the material. The knowledge of optical constants of these materials opens new experimental and computational possibilities for further development of all-TMD nanophotonics.
过渡金属二硫属化物(TMDs)因其卓越的光学和激子特性而备受关注。早在20世纪60年代人们就已了解到,并且最近又重新发现,许多TMDs具有高折射率和光学各向异性,这使得它们在纳米光子学应用中颇具吸引力。然而,要准确分析和预测纳米光学现象,需要了解沿面内和面外方向以及在很宽光谱范围内的介电常数,而这些信息往往难以获取或并不完整。在此,我们展示了一项对几种通过光谱椭偏仪在300 - 1700 nm宽光谱范围内获得的剥离TMD多层膜的光学常数进行的实验研究。所研究的具体材料包括半导体WS、WSe、MoS、MoSe和MoTe,以及面内各向异性的ReS和WTe,还有金属TaS、TaSe和NbSe。所提取的参数显示出高折射率(MoTe高达约4.84)、显著的各向异性(MoTe的 - ≈ 1.54)以及在近红外区域的低吸收。此外,金属TMDs表现出等离子体 - 电介质组合行为和双曲性的潜力,因为它们的等离子体频率根据材料不同出现在约1000 - 1300 nm附近。这些材料光学常数的知识为全TMD纳米光子学的进一步发展开启了新的实验和计算可能性。