Orbital chiral lasing in twisted bilayer metasurfaces

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Wang, Mingjin, Lv, Nianyuan, Zhang, Zixuan, Chen, Ye, Si, Jiahao, Chen, Jingxuan, Tang, Chenyan, Yin, Xuefan, Liu, Zhen, Xin, Dongxu, Yi, Zhaozheng, Zheng, Wanhua, Kivshar, Yuri, Peng, Chao
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866909659870265344
author Wang, Mingjin
Lv, Nianyuan
Zhang, Zixuan
Chen, Ye
Si, Jiahao
Chen, Jingxuan
Tang, Chenyan
Yin, Xuefan
Liu, Zhen
Xin, Dongxu
Yi, Zhaozheng
Zheng, Wanhua
Kivshar, Yuri
Peng, Chao
author_facet Wang, Mingjin
Lv, Nianyuan
Zhang, Zixuan
Chen, Ye
Si, Jiahao
Chen, Jingxuan
Tang, Chenyan
Yin, Xuefan
Liu, Zhen
Xin, Dongxu
Yi, Zhaozheng
Zheng, Wanhua
Kivshar, Yuri
Peng, Chao
contents Chirality is a fundamental concept in physics that underpins various phenomena in nonlinear optics, quantum physics, and topological photonics. Although the spin of a photon naturally brings chirality, orbital angular momentum can also become chirally active in the structures with a broken mirror symmetry. Here, we observe orbital chiral lasing from a twisted bilayer photonic structure leveraging its inherent structural chirality. Specifically, we design and fabricate a Moire-type optical structure by bonding and rotating two separate semiconductor membrane metasurfaces. We achieve single-mode lasing over a broad spectral range of 250 nm by optically pumping the twisted structure. The lasing emission exhibits orbital chiral characteristics, arising from helical and non-Hermitian couplings between clockwise and counter-clockwise rotating collective guided resonances, confirmed by polarization-resolved imaging and self-interference patterns. Our results provide the first observation of orbital chiral lasing in twisted photonics, and they can contribute to diverse applications of chiral light in diagnostics, optical manipulation, and communication with light.
format Preprint
id arxiv_https___arxiv_org_abs_2506_20227
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Orbital chiral lasing in twisted bilayer metasurfaces
Wang, Mingjin
Lv, Nianyuan
Zhang, Zixuan
Chen, Ye
Si, Jiahao
Chen, Jingxuan
Tang, Chenyan
Yin, Xuefan
Liu, Zhen
Xin, Dongxu
Yi, Zhaozheng
Zheng, Wanhua
Kivshar, Yuri
Peng, Chao
Optics
Chirality is a fundamental concept in physics that underpins various phenomena in nonlinear optics, quantum physics, and topological photonics. Although the spin of a photon naturally brings chirality, orbital angular momentum can also become chirally active in the structures with a broken mirror symmetry. Here, we observe orbital chiral lasing from a twisted bilayer photonic structure leveraging its inherent structural chirality. Specifically, we design and fabricate a Moire-type optical structure by bonding and rotating two separate semiconductor membrane metasurfaces. We achieve single-mode lasing over a broad spectral range of 250 nm by optically pumping the twisted structure. The lasing emission exhibits orbital chiral characteristics, arising from helical and non-Hermitian couplings between clockwise and counter-clockwise rotating collective guided resonances, confirmed by polarization-resolved imaging and self-interference patterns. Our results provide the first observation of orbital chiral lasing in twisted photonics, and they can contribute to diverse applications of chiral light in diagnostics, optical manipulation, and communication with light.
title Orbital chiral lasing in twisted bilayer metasurfaces
topic Optics
url https://arxiv.org/abs/2506.20227