Tailoring intrinsic chiroptical responses via twisted bilayer α-MoO3 separated by a VO2 film

Author:

Lu Junjian12,Sang Tian12ORCID,Pian Chui12ORCID,Ouyang Siyuan12,Jing Ze12

Affiliation:

1. Department of Photoelectric Information Science and Engineering, School of Science, Jiangnan University 1 , Wuxi 214122, China

2. Jiangsu Provincial Research Center of Light Industrial Optoelectronic Engineering and Technology, Jiangnan University 2 , Wuxi 214122, China

Abstract

Flexible control of intrinsic chiroptical responses within compact nanostructures is crucial for flat optics, topological photonics, and chiroptics. However, previous approaches require complicated patterns with both in-plane and out-of-plane mirror symmetry breaking to achieve intrinsic chirality, and their chiroptical responses cannot be dynamically controlled as well. Herein, we demonstrated that near-perfect intrinsic circular dichroism (CD) can be achieved within a lithography-free structure consisting of the twisted bilayer α-MoO3 separated by a vanadium dioxide (VO2) film. By twisting the bilayer α-MoO3, dual-band intrinsic chiroptical responses can be realized due to the excitations of the hyperbolic phonon polaritons modes in the mid-infrared. It is the spin-selected average electric-field enhancement instead of the chiral absorption that is responsible for the intrinsic CD of the device. In addition, the chiroptical responses are insensitive to the variation of the thickness of the structure as well as the incident angle, and high contrast CD can be dynamically tuned by varying the volume fraction of VO2.

Funder

National Natural Science Foundation of China

State Key Laboratory of Advanced Optical Communication Systems and Networks

Postgraduate Research & Practice Innovation Program of Jiangsu Province

Publisher

AIP Publishing

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