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Potassium tantalate niobate crystals:Efficient quadratic electro-optic materials and their laser modulation technology 被引量:1

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摘要 Electro-optic(EO)crystals are important material for all-solid-state laser technology,which can be used to fabricate various laser modulators,such as EO switches,laser deflectors,and optical waveguide.The improvements in new high-efficiency EO crystal materials have held great significance to the development of laser technology.Potassium tantalate niobate(KTN)is a popular multifunctional crystal because of its remarkable and excellent quadratic EO effect.KTN EO modulation technology offers numerous advantages,such as high efficiency,good stability,a quick response time,and inertia-free characteristics.In this paper,we summarize the research progress of KTN series crystals systemically,including the theoretical exploration on quadratic EO effect,solid-melt crystal growth technique,comprehensive physical characterization,new physical effect and mechanisms exploration,new EO devices development and design.The EO modulation technique based on the Kerr effect of KTN series crystal offers obvious advantages in reducing the drive voltage and device size,which could better meet the developmental needs of future lasers with a wide wavelength,miniaturization,and integration.This may provide theoretical guidance and an experimental basis for the design and development of new EO crystal devices and promote the development of laser technology.
出处 《Journal of Materiomics》 SCIE CSCD 2023年第5期838-854,共17页 无机材料学学报(英文)
基金 supported by the National Natural Science Foundation of China(52072189,and 51972179) Natural Science Foundation of Shandong Province(ZR2020KE019 and ZR2020QE041) Science and Technology Program for Young Innovation Team in Colleges and Universities of Shandong Province,China(2019KJA003) Studio for the Leader of Scientific Research in Jinan(2019GXRC059) Major Innovation Project for Integrating Science,Education&Industry of Qilu University of Technology(Shandong Academy of Sciences)(2022PYI015 and 2022JBZ01-07) Innovation Capability Improvement Project for Small and Mediumsized Technology-based Enterprise of Shandong Province,China(2022TSGC1357).
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