Torun Engin, Paleari Fulvio, Milošević Milorad V, Wirtz Ludger, Sevik Cem
Department of Physics and Materials Science, University of Luxembourg, 162a avenue de la Faïencerie, Luxembourg L-1511, Luxembourg.
CNR-NANO, Via Campi 213a, Modena 41125, Italy.
Nano Lett. 2023 Apr 26;23(8):3159-3166. doi: 10.1021/acs.nanolett.2c04724. Epub 2023 Apr 10.
We demonstrate the possibility of engineering the optical properties of transition metal dichalcogenide heterobilayers when one of the constitutive layers has a Janus structure. We investigate different MoS@Janus layer combinations using first-principles methods including excitons and exciton-phonon coupling. The direction of the intrinsic electric field from the Janus layer modifies the electronic band alignments and, consequently, the energy separation between dark interlayer exciton states and bright in-plane excitons. We find that in-plane lattice vibrations strongly couple the two states, so that exciton-phonon scattering may be a viable generation mechanism for interlayer excitons upon light absorption. In particular, in the case of MoS@WSSe, the energy separation of the low-lying interlayer exciton from the in-plane exciton is resonant with the transverse optical phonon modes (40 meV). We thus identify this heterobilayer as a prime candidate for efficient generation of charge-separated electron-hole pairs.
当组成层之一具有Janus结构时,我们证明了调控过渡金属二卤化物异质双层光学性质的可能性。我们使用包括激子和激子-声子耦合在内的第一性原理方法,研究了不同的MoS@Janus层组合。来自Janus层的内建电场方向改变了电子能带排列,进而改变了暗层间激子态和亮面内激子之间的能量间隔。我们发现面内晶格振动强烈耦合这两种状态,因此激子-声子散射可能是光吸收时层间激子的一种可行产生机制。特别是,在MoS@WSSe的情况下,低能层间激子与面内激子的能量间隔与横向光学声子模(40毫电子伏特)共振。因此,我们将这种异质双层确定为有效产生电荷分离的电子-空穴对的主要候选材料。