Monocrystalline materials for high-power ultrafast lasers

被引:0
|
作者
Preclikova, Jana [1 ]
Bartos, Karel [1 ]
Polak, Jan [1 ]
Kubat, Jan [1 ]
Pilar, Jan [2 ]
Navratil, Petr [2 ]
Hanus, Martin [2 ]
Divoky, Martin [2 ]
Lucienetti, Antonio [2 ]
Fibrich, Martin [3 ]
Koselja, Michal [3 ]
Green, Jonathan Tyler [3 ]
Ertel, Klaus [4 ]
Phillips, Jonathan [4 ]
De Vido, Mariastefania [4 ]
Rus, Bedrich [3 ]
Mocek, Tomas [2 ]
Houzvicka, Jindrich [1 ]
机构
[1] CRYTUR Spol Sro, Na Lukach 2283, CZ-51101 Turnov, Czech Republic
[2] Czech Acad Sci, Inst Phys, HiLASE Ctr, Za Radn 828, CZ-25241 Dolni Brezany, Czech Republic
[3] FZU AS CR Vvi, Extreme Light Infrastruct Beamlines, Na Slovance 2, CZ-18221 Prague, Czech Republic
[4] STFC Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England
关键词
monocrystals; Yb:YAG laser slabs; Diode Pumped Solid State Laser;
D O I
10.1117/12.2524953
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Crytur is a company with long tradition of growing and processing crystals for technical applications, with history reaching back to 1943. Recently we have developed Crystal Improved Growth (CRIG) method for production of large core-free single crystals of YAG. The diameter currently achieved is 140 mm (in case of undoped crystal), and the crystal weight is up to 10 kg. The method was used to grow un-doped YAG crystals, YAG:Ce crystals for large scintillating screens, and Yb:YAG and Nd:YAG for high power solid-state laser systems. Large laser slabs were manufactured from Yb:YAG doped crystals for Diode-Pumped Solid State Laser (DPSSL) system Amos, which operates within Extreme Light Infrastructure in the Czech republic (ELI Beamlines). The dimension of the largest Yb:YAG laser slab produced is 120x120x8 mm, there is no visible stress under crossed polarizers and the wavefront distortion in the clear aperture region is smaller than lambda/10 (lambda=633 nm) in its Peak-to-Valley value. The edges of the slab are from diffusively bonded Cr:YAG cladding in order to suppress ASE (Amplified Spontaneous Emission). In 2018 the performance of three sets of laser slabs (empty set55x5 mm) with differently realized ASE suppression was characterized at cryogenic temperatures at HiLASE Centre in terms of small signal gain measurements as well as amplification test under 30 J pumping at 1 Hz and 10 Hz repetition rates. We provide data that show that the crystal slabs have comparable properties to the ceramic slabs (produced by Konoshima company, Japan) currently in use at HiLASE.
引用
收藏
页数:6
相关论文
共 50 条
  • [31] High-power fibre lasers
    Jauregui, Cesar
    Limpert, Jens
    Tuennermann, Andreas
    NATURE PHOTONICS, 2013, 7 (11) : 861 - 867
  • [32] High-power AlGaInN lasers
    Takeya, M
    Tojyo, T
    Asano, T
    Ikeda, S
    Mizuno, T
    Matsumoto, O
    Goto, S
    Yabuki, Y
    Uchida, S
    Ikeda, M
    PHYSICA STATUS SOLIDI A-APPLICATIONS AND MATERIALS SCIENCE, 2002, 192 (02): : 269 - 276
  • [33] SESAMs for high-power lasers
    Alfieri, C. G. E.
    Diebold, A.
    Kopp, M.
    Waldburger, D.
    Mangold, M.
    Emaury, F.
    Saraceno, C. J.
    Gini, E.
    Keller, U.
    2016 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO), 2016,
  • [34] HIGH-POWER DYE LASERS
    MACK, ME
    JOURNAL OF THE OPTICAL SOCIETY OF AMERICA, 1973, 63 (04) : 505 - 505
  • [35] APPLICATIONS OF HIGH-POWER LASERS
    WITKOWSKI, S
    KOMPA, KL
    RECHERCHE, 1979, 10 (104): : 956 - 966
  • [36] HIGH-POWER LASERS.
    Reilly, James P.
    1600, (80):
  • [37] MONITORING HIGH-POWER LASERS
    GALARNEAU, P
    LANGLOIS, P
    BELANGER, M
    PHOTONICS SPECTRA, 1991, 25 (01) : 112 - 113
  • [38] HIGH-POWER PULSED LASERS
    GIBSON, AF
    PHYSICS IN TECHNOLOGY, 1978, 9 (02): : 72 - 78
  • [39] High-power lasers and their applications
    Svanberg, S
    ADVANCES IN QUANTUM CHEMISTRY, VOL 30: MODERN TRENDS IN ATOMIC PHYSICS, 1998, 30 : 209 - 233
  • [40] High-Power Fiber Lasers
    Nilsson, Johan
    Payne, David N.
    SCIENCE, 2011, 332 (6032) : 921 - 922