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File:Doyam10map4bT100.png [[Category:Laser science]](1,199 × 1,167 (629 KB)) - 09:39, 21 June 2013File:DoyaPlotT100.png [[Category:Laser science]](580 × 590 (77 KB)) - 08:34, 1 December 2018File: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 2013File: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 2013File: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 2013File: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 2013File: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 2013File: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 2013File: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 2013File:KellerDoyaT.png Comparison of the [[transfer function]]s for realistic laser amplifiers at the continuous–wave operation (the [[Doya function]]) and f [[Category:Laser science]](661 × 881 (70 KB)) - 08:39, 1 December 2018File:KellerMapT.png [[Category:Laser science]](1,773 × 1,752 (1 MB)) - 08:39, 1 December 2018File:KellerPlotT.png [[Category:Laser science]](870 × 885 (118 KB)) - 08:39, 1 December 2018File:LambertWmap150.png [[Category:Laser science]](1,773 × 1,752 (523 KB)) - 08:41, 1 December 2018File:LaserLevels1.png Scheme of laser levels of Yb: dopant; the distance between sub-levels is exaggerated. [[Category:Laser science]](660 × 1,000 (35 KB)) - 09:39, 21 June 2013File:McCumberRelationActiveCemters.png Active centers of a composite [[laser medium]] in the simplest two-level approximation [[Category:Laser science]](676 × 362 (19 KB)) - 11:21, 21 June 2013File:MicroChipAtomicTrap00.jpg [[Institute for Laser Science|ILS]], [[Japan]]. ...o play with the effective potential along this wire. The interaction with laser beams and reduction of the trapping potential allow the additional cooling(890 × 976 (44 KB)) - 09:39, 21 June 2013File:Perpetualmo.jpg $\rm Yb : Gd_2 Si O_5$ laser. [[Appl. Phys. Lett.]] 88, 221117 (2006). ...J.Xu. Diode-pumped continuous-wave and passively mode-locked Yb : Gd2SiO5 laser. – [[Optics Express]] 14, 686-695 (2006)(766 × 572 (33 KB)) - 09:38, 21 June 2013File:ShokaMapT.png [[Category:Laser science]](1,773 × 1,752 (992 KB)) - 08:51, 1 December 2018File:ShokopPlotAT.png [[Category:Laser science]](1,669 × 955 (129 KB)) - 09:43, 21 June 2013File:TaniaContourPlot100.png [[Category:Laser science]](1,182 × 1,168 (931 KB)) - 08:53, 1 December 2018