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Optics Letters|July 1, 2014
Microchip laser mid-infrared supercontinuum laser source based on an As2Se3 fiberRafael R Gattass, L Brandon Shaw, Jasbinder S SangheraOptics Letters|September 3, 2010
Computational study of 3-5 microm source created by using supercontinuum generation in As2S3 chalcogenide fibers with a pump at 2 micromJonathan Hu, Curtis R Menyuk, L Brandon Shaw, et al.Optics Express|April 15, 2010
Maximizing the bandwidth of supercontinuum generation in As2Se3 chalcogenide fibersJonathan Hu, Curtis R Menyuk, L Brandon Shaw, et al.Applied Optics|November 13, 2015
Review of antireflective surface structures on laser optics and windowsLynda E Busse, Jesse A Frantz, L Brandon Shaw, et al.Optics Letters|June 1, 2016
Fabrication tolerances in As2S3 negative-curvature antiresonant fibersR Joseph Weiblen, Curtis R Menyuk, Rafael R Gattass, et al.Optics Letters|August 15, 2015
Highly efficient cascaded amplification using Pr(3+)-doped mid-infrared chalcogenide fiber amplifiersJonathan Hu, Curtis R Menyuk, Chengli Wei, et al.Applied Optics|November 13, 2015
Review of infrared fiber-based componentsRafael R Gattass, Rajesh Thapa, Frederic H Kung, et al.Optics Express|August 13, 2025
Characterization of the dispersion uniformity and nonlinear pulse propagation of photonic crystal fibersTimothy Lim, Rafael R Gattass, Daniel L Rhonehouse, et al.Optics Letters|October 30, 2015
Low-loss, robust fusion splicing of silica to chalcogenide fiber for integrated mid-infrared laser technology developmentRajesh Thapa, Rafael R Gattass, Vinh Nguyen, et al.Optics Express|June 14, 2025
All spliced 36.7 W four wave mixing fiber source near 770 nmPatrick Hemmer, Rafael Gattass, Daniel L Rhonehouse, et al.Pageof 2