DUV coherent light emission from ultracompact microcavity wavelength conversion device

Author:

Nambu Tomoaki1,Yano Taketo1,Umeda Soshi1,Yokoyama Naoki1,Honda Hiroto1,Tanaka Yasunori1,Maegaki Yutaka1,Mori Yusuke1,Yoshimura Masashi1,Kobayashi Shuhei1,Ichikawa Shuhei1ORCID,Fujiwara Yasufumi1,Ishii Ryota2ORCID,Kawakami Yoichi2,Uemukai Masahiro1,Tanikawa Tomoyuki1,Katayama Ryuji1

Affiliation:

1. Osaka University

2. Kyoto University

Abstract

A unique design of our ultracompact microcavity wavelength conversion device exploits the simple principle that the wavelength conversion efficiency is proportional to the square of the electric field amplitude of enhanced pump light in the microcavity, and expands the range of suitable device materials to include crystals that do not exhibit birefringence or ferroelectricity. Here, as a first step toward practical applications of all-solid-state ultracompact deep-ultraviolet coherent light sources, we adopted a low-birefringence paraelectric SrB4O7 crystal with great potential for wavelength conversion and high transparency down to 130 nm as our device material, and demonstrated 234 nm deep-ultraviolet coherent light generation, whose wavelength band is expected to be used for on-demand disinfection tools that can irradiate the human body.

Funder

Japan Society for the Promotion of Science

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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