• Infrared and Laser Engineering
  • Vol. 49, Issue 4, 0418001 (2020)
Pengfei Jiang1、2, Haixin Wu1, Youbao Ni1, Changbao Huang1, and Zhenyou Wang1
Author Affiliations
  • 1Anhui Provincial Key Laboratory of Photonic Devices and Material, Anhui Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Hefei 230031, China
  • 2University of Science and Technology of China, Hefei 230026, China
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    DOI: 10.3788/IRLA202049.0418001 Cite this Article
    Pengfei Jiang, Haixin Wu, Youbao Ni, Changbao Huang, Zhenyou Wang. Growth of the new long-wave infrared nonlinear crystal PbIn6Te10[J]. Infrared and Laser Engineering, 2020, 49(4): 0418001 Copy Citation Text show less
    References

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    [2] Yongchang Zhang, Haiyong Zhu, Jing Zhang. Compact widely tunable continuous-wave MgO: PPLN optical parametric oscillator. Infrared and Laser Engineering, 47, 1105008(2018).

    [3] Xi Feng, Fuquan Li, Aoxiang Lin. Polarization and intensity dependence of all-optical poling in germanosilicate glass. Infrared and Laser Engineering, 48, 0817002(2019).

    [4] Ning Jia, Shanpeng Wang, Xutang Tao. Research progress of mid-and far-infrared nonlinear optical crystals. Acta Physica Sinica, 67, 7-18(2018).

    [5] Degang Xu, Xianli Zhu, Yixin He. Advances in organic nonlinear crystals and ultra-wideband terahertz radiation sources. Chinese Optics, 12, 535-558(2019).

    [6] Hangbin Zhao, Zongcun Zhang, Mengyang Chai. Wide-swath and long-wave infrared zoom imaging method with variable frame rate. Optics and Precision Engineering, 26, 1758-1765(2018).

    [7] Y M Andreev, V V Badikov, A A Ionin. Optical properties of PbIn6Te10 in the long-wave IR. Laser Physics Letters, 13, 125405(2016).

    [8] S Avanesov, V Badikov, A Tyazhev. PbIn6Te10: new nonlinear crystal for three-wave interactions with transmission extending from 1.7 to 25 μm. Optical Materials Express, 1, 1286-1291(2011).

    [9] A H Reshak, O V Parasyuk, H Kamarudin. Experimental and theoretical study of the electronic structure and optical spectral features of PbIn6Te10. RSC Advances, 6, 73107-73117(2016).

    [10] A A Ionin, I O Kinyaevskiy, Y M Klimachev. Frequency conversion of molecular gas lasers in PbIn6Te10 crystal within mid-IR range. Optics Letters, 41, 2390-2393(2016).

    [11] S A Avanesov, D V Badikov, V V Badikov. Phase equilibrium studies in the PbTe-Ga2Te3 and PbTe-In2Te3 systems for growing new nonlinear optical crystals of PbGa6Te10 and PbIn6Te10 with transparency extending into the far-IR. Journal of Alloys and Compounds, 612, 386-391(2014).

    [12] Chenghui Huang, Jianhong Huang, Ge Zhang. A method for accurate calculation of the absorption coefficients of optical materials. Laser Journal, 45-46(2001).

    [13] Wendan Cheng, Chensheng Lin, Hao Zhang. Theoretical evaluation on terahertz source generators from ternary metal chalcogenides of PbM6Te10(M=Ga, In). The Journal of Physical Chemistry C, 122, 4557-4564(2018).

    Pengfei Jiang, Haixin Wu, Youbao Ni, Changbao Huang, Zhenyou Wang. Growth of the new long-wave infrared nonlinear crystal PbIn6Te10[J]. Infrared and Laser Engineering, 2020, 49(4): 0418001
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