Welcome to JOURNAL OF SYNTHETIC CRYSTALS! Today is Share:

JOURNAL OF SYNTHETIC CRYSTALS ›› 2024, Vol. 53 ›› Issue (4): 551-553.

• Research Letter •     Next Articles

Growth and Device Fabrication of Mid to Far-Infrared Cr2+/Fe2+∶CdSe Crystals

HUANG Changbao1, HU Qianqian1,2, ZHU Zhicheng1,2, LI Ya1,2, MAO Changyu1, XU Junjie1, WU Haixin1, NI Youbao1   

  1. 1. Anhui Provincial Key Laboratory of Photonic Devices and Material, Anhui Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Hefei 230031, China;
    2. University of Science and Technology of China, Hefei 230026, China
  • Received:2023-12-25 Online:2024-04-15 Published:2024-04-19

Abstract: In this study, the Cr2+∶CdSe and Fe2+∶CdSe crystals were successfully grown by the Mo-crucible sealed Bridgman method using a vacuum single-crystal furnace with two zones developed by ourselves, and the crystal size reaches ϕ51 mm×110 mm. Cr2+∶CdSe and Fe2+∶CdSe crystals demonstrate obvious absorption in the bands of 1 400~2 400 nm and 2 500~5 200 nm, respectively. The transmittances of Cr2+/Fe2+doped CdSe crystals are close to the transmittance limit of CdSe crystal (~70%) in the 7~15 μm band, and the converted absorption coefficient is about 0.005 cm-1. The Cr2+/Fe2+∶CdSe crystals grown by the Mo-crucible sealed Bridgman method have the advantages of the controllable doping concentration of transition metal ions, uniform doping and high crystal quality. The Cr2+/Fe2+∶CdSe crystals could be used as both mid-infrared laser crystal and far-infrared nonlinear optical crystal material.

Key words: mid-far infrared laser, nonlinear optic crystal, laser crystal, transition metal doping, CdSe crystal, crystal growth, Bridgman method

CLC Number: