2.7mW output of emerald laser pumped by laser diode - art. no. 60280M

被引:0
|
作者
Chen, ZQ [1 ]
Zhang, G [1 ]
机构
[1] Jinan Univ, Inst Optoelect Engn, Guangzhou 510632, Peoples R China
来源
关键词
laser diode; free running laser; emerald crystal;
D O I
10.1117/12.667145
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Emerald [Cr3+ :Be3Al2Si6O18] is a negative uniaxial crystal and belongs to the hexagonal system with a space group D-6h(2) (P6/mcc).Owing to transitions of the Cr3+ ion, emerald crystal is a more efficient wide band tunable laser medium among many Cr3+-doped lasing mediums. Compared with alexandrite, emerald has a more complex crystal structure and a weaker crystal field. The emission cross-section of emerald is approximately four times larger than of alexandrite. Its melting point is 1470 degrees C, which is 400 degrees C lower than that of alexandrite. The thermal conductivity of emerald is 0.04W/cm(-1)deg(-1), being nearly six times less than that of alexandrite([1]). Since 1982, emerald lasers have been achieved running with pumping by flash lamps, shot pulse laser generated by a Nd:YAG pumped Ba(NO3)(2) Raman laser, an argon laser and a krypton CW laser[1-7]. Ref. 6 reported that the laser output-slope efficiency achieved 64% with the use of higher optical quality emerald crystal and high efficient resonator. But nowadays, emerald lasers have received only marginal application due to producing adequate size crystal with difficulty, limitation of growth method, poor optical quality and intense thermal effect. In the course of our studies on the growth conditions of emerald crystals in a ([8-9]) new hydrothermal solution, the quality of emerald crystals has been improved from gem quality to optical quality. With the development of high power laser diode and the improvement of emerald quality, the LD pumping emerald laser is essential to study. In this paper, we reported an emerald CW laser at 731nm wavelength pumped by 660nm LD and its performance. According to our knowledge, this is first paper about LD pumping emerald laser.
引用
收藏
页码:M280 / M280
页数:4
相关论文
共 50 条
  • [1] A diode-pumped Rb laser at 398 nm - art. no. 68711Q
    Petersen, A. B.
    Lane, R. J.
    SOLID STATE LASERS XVII: TECHNOLOGY AND DEVICES, 2008, 6871 : Q8711 - Q8711
  • [2] Output characteristics of nonlinear photoconductive semiconductor switches triggered by laser diode - art. no. 602026
    Sun, YL
    Shi, SX
    Wu, X
    Zhu, YW
    Optoelectronic Materials and Devices for Optical Communications, 2005, 6020 : 2026 - 2026
  • [3] High-efficiency diode-pumped rubidium laser: Experimental results - art. no. 634607
    Perschbacher, Ty A.
    Hostutler, David A.
    Shay, T. M.
    XVI International Symposium on Gas Flow, Chemical Lasers, and High-Power Lasers, Pts 1 and 2, 2007, 6346 : 34607 - 34607
  • [5] Resonantly diode laser pumped 1.6-μm-erbium-doped yttrium aluminum garnet solid-state laser -: art. no. 131115
    Garbuzov, D
    Kudryashov, I
    Dubinskii, M
    APPLIED PHYSICS LETTERS, 2005, 86 (13) : 1 - 3
  • [6] Diode-pumped Er:SrF2 laser tunable at 2.7 μm
    Svejkar, Richard
    Sulc, Jan
    Jelinkova, Helena
    Kubecek, Vaclav
    Ma, Weiwei
    Jiang, Dapeng
    Wu, Qinghui
    Su, Liangbi
    OPTICAL MATERIALS EXPRESS, 2018, 8 (04): : 1025 - 1030
  • [7] The airborne laser - art. no. 63461M
    Lamberson, Steven
    Schall, Harold
    Shattuck, Paul
    XVI International Symposium on Gas Flow, Chemical Lasers, and High-Power Lasers, Pts 1 and 2, 2007, 6346 : M3461 - M3461
  • [8] Automatic tester for high power diode laser bars - art. no. 68990M
    Miesner, Joern
    Frischkorn, Felix
    Uhlig, Niels
    PHOTONICS PACKAGING, INTEGRATION, AND INTERCONNECTS VIII, 2008, 6899 : M8990 - M8990
  • [9] 110 W(0.9 J) pulsed power from resonantly diode-laser-pumped 1.6-μm Er:YAG laser -: art. no. 121101
    Garbuzov, D
    Kudryashov, I
    Dubinskii, M
    APPLIED PHYSICS LETTERS, 2005, 87 (12) : 1 - 3
  • [10] Diode-pumped Er:CaF2 ceramic 2.7 μm tunable laser
    Sulc, Jan
    Nemec, Michal
    Svejkar, Richard
    Jelinkova, Helena
    Doroshenko, Maxim E.
    Fedorov, Pavel P.
    Osiko, Vyacheslav V.
    OPTICS LETTERS, 2013, 38 (17) : 3406 - 3409