Freely designable optical frequency conversion in Raman-resonant four-wave-mixing process

Scientific Reports
Jian Zheng, Masayuki Katsuragawa

Abstract

Nonlinear optical processes are governed by the relative-phase relationships among the relevant electromagnetic fields in these processes. In this Report, we describe the physics of arbitrary manipulation of Raman-resonant four-wave-mixing process by artificial control of relative phases. As a typical example, we show freely designable optical-frequency conversions to extreme spectral regions, mid-infrared and vacuum-ultraviolet, with near-unity quantum efficiencies. Furthermore, we show that such optical-frequency conversions can be realized by using a surprisingly simple technology where transparent plates are placed in a nonlinear optical medium and their positions and thicknesses are adjusted precisely. In a numerical simulation assuming practically applicable parameters in detail, we demonstrate a single-frequency tunable laser that covers the whole vacuum-ultraviolet spectral range of 120 to 200 nm.

References

Sep 8, 2000·Physical Review Letters·J Q LiangK Hakuta
Sep 16, 2000·Physical Review Letters·A V SokolovS E Harris
Jun 21, 2001·Physical Review Letters·K S EikemaT W Hänsch
Jul 30, 2005·Science·P O SchmidtD J Wineland
Oct 4, 2005·Optics Letters·Masayuki Katsuragawa, Takashi Onose
Dec 31, 2008·Physical Review Letters·Takayuki SuzukiMasayuki Katsuragawa
Dec 18, 2010·Optics Express·Takayuki Suzuki, Masayuki Katsuragawa
Jun 5, 2012·Optics Letters·Asia ShapiraAdy Arie

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Citations

Feb 9, 2019·Scientific Reports·Mariia ShutovaAlexei V Sokolov
Feb 7, 2018·Optics Express·C OhaeM Katsuragawa
Mar 18, 2021·Optics Express·Tetsushi TakanoMasayuki Katsuragawa

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