Date of download: 5/30/2016 Copyright © 2016 SPIE. All rights reserved. Laser configuration with no intervening optics before nonlinear crystals. Figure Legend: From: Palm-top size megawatt peak power ultraviolet microlaser Opt. Eng. 2013;52(7): doi: /1.OE
Date of download: 5/30/2016 Copyright © 2016 SPIE. All rights reserved. Photograph of microlaser prototype without cooling (a) and with thermoelectric cooling (b). Figure Legend: From: Palm-top size megawatt peak power ultraviolet microlaser Opt. Eng. 2013;52(7): doi: /1.OE
Date of download: 5/30/2016 Copyright © 2016 SPIE. All rights reserved. Temporal profile of the fundamental laser output having a pulse width of 230 ps, measured using Tektronix DPO71604C oscilloscope and EOT ET-3500 detector. Figure Legend: From: Palm-top size megawatt peak power ultraviolet microlaser Opt. Eng. 2013;52(7): doi: /1.OE
Date of download: 5/30/2016 Copyright © 2016 SPIE. All rights reserved. Temporal profile of SHG output having a pulse width of 177 ps, measured using Tektronix DPO71604C oscilloscope and EOT ET detector. Figure Legend: From: Palm-top size megawatt peak power ultraviolet microlaser Opt. Eng. 2013;52(7): doi: /1.OE
Date of download: 5/30/2016 Copyright © 2016 SPIE. All rights reserved. (a) Temporal profile of FHG output having a pulse width of 177 ps, measured using Tektronix DPO71604C oscilloscope and Alphalas UPD-50-UD detector. (b) Beam profile of FHG pulse. Figure Legend: From: Palm-top size megawatt peak power ultraviolet microlaser Opt. Eng. 2013;52(7): doi: /1.OE
Date of download: 5/30/2016 Copyright © 2016 SPIE. All rights reserved. M2 measurement results for the output FHG beam. Figure Legend: From: Palm-top size megawatt peak power ultraviolet microlaser Opt. Eng. 2013;52(7): doi: /1.OE