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Journal of Synthetic Crystals ›› 2026, Vol. 55 ›› Issue (9): 1363-1370.DOI: 10.16553/j.cnki.issn1000-985x.2026.0108

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TSSG Method Growth and Magneto-Optical Properties of KDy(WO4)2 Crystals

YUAN Yazhou1,2(), CHEN Danfeng2, JIANG Xiliang2, FENG Guiqing2, XU Xieming1, XU Liuwei1,2, WANG Shuaihua1,2(), WU Shaofan1,2   

  1. 1.Fujian Science & Technology Innovation Laboratory for Optoelectronic Information of China,Fuzhou 350108,China
    2.State Key Laboratory of Functional Crystals and Devices,Fujian Institute of Research on the Structure of Matter,Chinese Academy of Sciences,Fuzhou 350002,China
  • Received:2026-06-02 Online:2026-09-20 Published:2026-09-29
  • Contact: WANG Shuaihua

Abstract: In this paper, KDy(WO4)2(KDW) crystal with a size of 40 mm × 40 mm × 15 mm was successfully grown by top-seeded solution growth (TSSG) method. The crystal structural, optical quality, thermal properties, laser induced damage threshold and magneto-optical properties of KDW crystal were comprehensively studied. The rocking curve shows that the full width at half-maximum of KDW (020) wafer is 0.071 2°, indicating that the crystal has good crystal quality. The transmittance curve shows that the KDW (020) wafer has a high transmittance in the visible-near infrared band. The results of single crystal X-ray diffraction (SCXRD) refinement show that KDW crystal belongs to monoclinic I2/a space group, and [DyO8], [WO6] and [KO10] groups constitute the crystal skeleton. The [WO6]-related vibration mode in Raman spectra matches the monoclinic KRe(WO4)2 system.Thermal tests indicate that the thermal conductivity, thermal diffusion coefficient and specific heat capacity of KDW crystal at 298 K are 3.792 W/(m·K), 1.692 mm2/s and 0.307 J/(g·K), respectively. The laser induced damage threshold of KDW (020) wafer is 745.1 MW/cm2 at 1 064 nm and 10 ns. Based on the extinction method, the Verdet constants of KDW crystal at 405, 532 and 635 nm are -208.30, -82.17 and -54.01 rad/(m·T), respectively, and the corresponding magneto-optical figure of merit (FOM) are 768.21, 615.77 and 412.52(°)/T, respectively. This study shows that KDW crystal has excellent thermal/damage resistant properties and good visible Faraday rotation ability, and is a competitive magneto-optical crystal in visible-near infrared band.

Key words: magneto-optical crystal; KDW; tungstate; TSSG method; Verdet constant; crystal growth

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