High orbital angular momentum lasing with tunable degree of chirality in a symmetry-broken microcavity

Author:

Qiao Zhen1,Yuan Zhiyi,Zhu Song,Gong Chaoyang,Liao Yikai,Gong Xuerui,Kim MunhoORCID,Zhang Dawei1ORCID,Chen Yu-ChengORCID

Affiliation:

1. University of Shanghai for Science and Technology

Abstract

Chiral lasers with orbital angular momenta (OAM) are building blocks in developing high-dimensional integrated photonic devices. However, it remains demanding to arbitrarily manipulate the precise degree of chirality (DOC) and quantum numbers of OAM in microscale lasers. This study reports a strategy to generate OAM microlasers with tunable DOCs and large quantum numbers through a ring-structured Fabry–Perot microcavity with nanoscale symmetry-broken geometry. By exploiting the uneven potential of photons distributed in a microcavity, the dissymmetry factor of OAM laser can be continuously tuned from −1 to +1 by manipulating optical pump positions. High-order OAM with tunable quantum numbers were also demonstrated, in which the largest quantum number reached up to 352. Finally, multivortex laser generation on-chip in spatial and temporal domains was accomplished. This study reveals the fundamental physics of symmetry-broken cavity and provides a simple yet scalable approach for manipulating the chirality of OAM microlasers, offering insights for high-dimensional information processing and optical communications.

Funder

Agency for Science, Technology and Research

Ministry of Education—Singapore

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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