Enhanced nonreciprocal light propagation based on epsilon-near-zero medium in the visible regime

Author:

Huang Jing1ORCID,He Yuan1,Zhu Hao1,Chen Qinjun1ORCID,Xu Yanhua2,Miao Lili1ORCID,Zhao Chujun1ORCID

Affiliation:

1. Key Laboratory for Micro/Nano Optoelectronic Devices of Ministry of Education & Hunan Provincial Key Laboratory of Low-Dimensional Structural Physics and Devices, School of Physics and Electronics, Hunan University, Changsha 410082, China

2. Key Laboratory of New Electric Functional Materials of Guangxi Colleges and Universities, Nanning Normal University, Nanning 530299, China

Abstract

We have experimentally demonstrated the nonreciprocal light propagation based on the axially asymmetric nonlinear absorption in the epsilon-near-zero (ENZ) media titanium nitride (TiN) nanosheets and C60 arranged in tandem in the visible regime. TiN nanosheets have been prepared and characterized to show broadband and ultrafast nonlinear optical response with the maximum nonlinear absorption coefficient about [Formula: see text] m/W at its ENZ wavelength, which is about ten times larger than that at 400 nm. With the enhanced nonlinear absorption of TiN nanosheets, a passive photonic diode fabricated with TiN-C60 in a tandem structure shows enhanced nonreciprocal transmission of femtosecond laser pulses with a nonreciprocity factor of 9.5 dB at the ENZ wavelength. The results show the potential applications of TiN nanosheets in ultracompact, polarization-independent, and physiochemically stable nonreciprocal light propagation and may pave way for the application of broadband ENZ-based all-optical devices.

Funder

National Natural Science Foundation of China

Publisher

AIP Publishing

Subject

Physics and Astronomy (miscellaneous)

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