Recent Advances in Oxide-based Nonlinear Optical Materials with Wide Infrared Transparency Beyond 6 μm

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35
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33

초록

Nonlinear optical (NLO) materials are indispensable for laser frequency conversion, by which the output wavelength of laser can be greatly expanded. A prerequisite for the applications of NLO materials is that they must be optically transparent in the working spectral range. Although the widely used infrared (IR) NLO crystals such as AgGaS2, AgGaSe2, and ZnGeP(2)have very broad mid-IR (2-20 mu m) transparency, they are all inherently suffered by low laser-induced damage thresholds (LDTs). Oxide-based materials usually possess desirably high LDTs, however, most of them have quite limited IR transparency, typically, within 6 mu m. In this Minireview, we focus on new oxide-based NLO materials showing exceptionally wide IR transparent ranges beyond 6 mu m, in which significant developments have been achieved in recent years. Nine relevant NLO materials are investigated and analyzed from the aspects of design strategy, synthesis and large crystal growth, optical and NLO properties as well as composition-structure-property correlations. A brief perspective on the future research directions is also provided.

키워드

nonlinear optics; mid-IR NLO material; oxide-based compound; second-harmonic generation; crystal growth; STRONG 2ND-HARMONIC GENERATION; LASER DAMAGE THRESHOLD; POLARITY CONTROL; BAND-GAP; CRYSTAL; GROWTH; DESIGN; RB; 1ST-PRINCIPLES; PREDICTION
제목
Recent Advances in Oxide-based Nonlinear Optical Materials with Wide Infrared Transparency Beyond 6 μm
저자
Chen, Xinglong; Ok, Kang Min
DOI
10.1002/asia.202001086
발행일
2020-11-16
유형
Review
저널명
Chemistry - An Asian Journal
권
15
호
22
페이지
3709 ~ 3716