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  • File:4t1.jpg
    P.S. My area is quantum mechanics and Laser science! Why did I have to do that a dirty work? Why the professional dosim
    (789 × 1,391 (86 KB)) - 09:38, 21 June 2013
  • File:ActiveMirror.png
    K. Ueda, N.Uehara. Laser-diode-pumped solid state lasers for gravitational wave antenna. [[Proceedin
    (440 × 416 (27 KB)) - 09:39, 21 June 2013
  • File:ArcKellerMapT.png
    [[Category:Laser science]]
    (1,773 × 1,752 (924 KB)) - 08:29, 1 December 2018
  • File:BouncingRay.png
    This picture have been presented at Third Laser Ceramics Symposium 2007, Paris – Auditorium Curie – CNRS – 3 rue Mich
    (440 × 200 (16 KB)) - 09:39, 21 June 2013
  • File:CoherentAddition.jpg
    There are coiled laser amplifiers which can be realized as single-mode double-clad fibers; which a ...to [[fiber laser]]s. As the ability of pumping and/or cooling of a single laser is saturated, several similar lasers can be forced to oscillate in phase wi
    (400 × 150 (16 KB)) - 09:39, 21 June 2013
  • File:DimaY2O3ethanol.jpg
    [[Category:Laser science]]
    (1,280 × 960 (450 KB)) - 20:14, 20 June 2020
  • File:DiskLaserJPEG.jpg
    ...on, J.Dong, K.Ueda. Surface loss limit of the power scaling of a thin-disk laser. [[J.Opt.Soc.Am.B]] v.23,p. 1074-1082 (2006)
    (444 × 200 (11 KB)) - 09:39, 21 June 2013
  • File:DiskLaserScalingLimit01.jpg
    Thick dashed line corresponds to uncovered disk laser; thick solid curve is the same for the disk wuth undoped layer (anti-ASE ca [[Category:Laser science]]
    (1,518 × 1,041 (56 KB)) - 09:39, 21 June 2013
  • File:Doya10map4bT60.png
    [[Category:Laser science]]
    (714 × 700 (342 KB)) - 08:34, 1 December 2018
  • File:Doya20map4bT100.png
    [[Category:Laser science]]
    (1,190 × 1,167 (663 KB)) - 08:34, 1 December 2018
  • File:DoyaconT70.png
    [[Category:Laser science]]
    (442 × 817 (98 KB)) - 09:39, 21 June 2013
  • File:Doyam10map4bT100.png
    [[Category:Laser science]]
    (1,199 × 1,167 (629 KB)) - 09:39, 21 June 2013
  • File:DoyaPlotT100.png
    [[Category:Laser science]]
    (580 × 590 (77 KB)) - 08:34, 1 December 2018
  • File:DSC01775hallNakagawa.JPG
    [[2012.10.05 International Workshop on Laser Science]], [[UEC]], Chofu, [[Japan]]. [[Category:2012.10.05 International Workshop on Laser Science]],
    (2,048 × 1,536 (1.36 MB)) - 09:43, 21 June 2013
  • File:DSC01777MorinagaNakamura.jpg
    [[2012.10.05 International Workshop on Laser Science]], P-8. [[2012.10.05 International Workshop on Laser Science]], [[UEC]], Chofu, [[Japan]].
    (2,048 × 1,536 (1.15 MB)) - 09:43, 21 June 2013
  • File:DSC01788roger.JPG
    [[2012.10.05 International Workshop on Laser Science]], [[UEC]], Chofu, [[Japan]]. [[Category:2012.10.05 International Workshop on Laser Science]]
    (2,048 × 1,536 (1.16 MB)) - 09:43, 21 June 2013
  • File:DSC01792dolls.JPG
    Dolls at the dinner after the [[2012.10.05 International Workshop on Laser Science]], [[UEC]], Chofu, [[Japan]]. [[Category:2012.10.05 International Workshop on Laser Science]],
    (2,048 × 1,536 (1.31 MB)) - 09:43, 21 June 2013
  • File:DSC01793bill.jpg
    [[2012.10.05 International Workshop on Laser Science]], [[UEC]], Chofu, [[Japan]]. [[Category:2012.10.05 International Workshop on Laser Science]],
    (2,048 × 1,536 (1.3 MB)) - 09:43, 21 June 2013
  • File:FiberDiskLasers.jpg
    ...power. Two black tubes provide the water cooling of the fiber coil and the laser diodes. The output is realized through two ends of the fiber; one of them i [[Category:Fiber disk laser]]
    (720 × 540 (48 KB)) - 10:44, 21 June 2013
  • File:FiberLaserDiskSchema.jpg
    ...mplifier, coiled at the heat sink, is pumped from the lateral array of the laser diodes. Laser Physics, Vol. 8, No. 3, 1998, pp. 774–781,
    (2,238 × 997 (86 KB)) - 10:46, 21 June 2013

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