Broadband enhancement of absorption by two-dimensional atomic crystals modeled as non-Hermitian photonic scattering
Article 2023 en
Authors
XC
Xingzhou Chen
ZS
Zheng Sun
MZ
Min Zhang
Abstract
1 min read
We report the design and fabrication of a vertical structure using a distributed Bragg reflector and dielectric material layer to achieve optimized optical absorption enhancement for a stack of monolayer WS2 and MoS2, namely, a tenfold increase in absorption over a 100 nm spectral range. Our research indicates that we can approach over 50% absorption by finely tuning the thickness of the spacer layer. Our theoretical model shows that the dependence of the absorption coefficient on the spacer thickness can be understood as a solution of a non-Hermitian Schrödinger equation. These results advance the development of broadband optical devices, including solar energy conversion and sensitive optical sensors, by using two-dimensional excitonic materials.
Martín López‐García, Rosalia Serna Galán, Miguel A. Castillo, Sara Núñez‐Sánchez, M. I. Vasilevskiy, Diogo Cunha, Carla Estévez‐Varela, Isabel Pastoriza Santos, William P. Wardley
Miguel Castillo, Diogo Cunha, Carla Estévez‐Varela, Daniel Miranda, Isabel Pastoriza Santos, Sara Núñez‐Sánchez, M. I. Vasilevskiy, Martín López‐García
Miguel Castillo, Diogo Cunha, Carla Estevez-Varela, Daniel Miranda, Isabel Pastoriza Santos, Sara Núñez‐Sánchez, M. I. Vasilevskiy, Martín López‐García
Discussion(0)
No comments yet. Be the first to comment.