Controllable unidirectional transport and light trapping using a one-dimensional lattice with non-Hermitian coupling

20Citations
Citations of this article
12Readers
Mendeley users who have this article in their library.

This article is free to access.

Abstract

We propose a one-dimensional tight-binding lattice with special non-Hermitian coupling, the imaginary part of which is modulated by an effective Peierls phase arising from the synthetic magnetic field. Such a non-Hermitian lattice supports robust unidirectional transport that is reflectionless and immune to defects; it thus can serve as a frequency-selectable light filter. To achieve more applications, we further construct two well-designed structures involving this lattice, namely a heterostructure and a sandwich structure. An optical diode can be realized using the heterostructure, while tunable light trapping and reversal can be realized through phase modulations on the sandwich structure. The results in this paper may not only open up a new path for unconventional light transport but also have potential applications for optical communication.

Cite

CITATION STYLE

APA

Du, L., Zhang, Y., & Wu, J. H. (2020). Controllable unidirectional transport and light trapping using a one-dimensional lattice with non-Hermitian coupling. Scientific Reports, 10(1). https://doi.org/10.1038/s41598-020-58018-2

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free