R
Ryan Lindberg
Researcher at Argonne National Laboratory
Publications - 67
Citations - 1235
Ryan Lindberg is an academic researcher from Argonne National Laboratory. The author has contributed to research in topics: Laser & Free-electron laser. The author has an hindex of 16, co-authored 62 publications receiving 1088 citations.
Papers
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Journal ArticleDOI
Demonstration of self-seeding in a hard-X-ray free-electron laser
J. Amann,William Berg,Vladimir Blank,F.-J. Decker,Y. Ding,P. Emma,Yiping Feng,J. Frisch,David Fritz,Jerome B. Hastings,Zhirong Huang,Jacek Krzywinski,Ryan Lindberg,H. Loos,Alberto Lutman,Heinz-Dieter Nuhn,Daniel Ratner,J. Rzepiela,Deming Shu,Yu. V. Shvyd'ko,Simone Spampinati,Stanislav Stoupin,Sergey Terentyev,Emil Trakhtenberg,D.R. Walz,J. Welch,Jihuai Wu,Alexander Zholents,Diling Zhu +28 more
TL;DR: In this article, the first half of the magnetic undulator was used to seed the second half via a diamond-based monochromator at angstrom wavelengths, which is a technique similar to ours.
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Demonstration of detuning and wavebreaking effects on Raman amplification efficiency in plasma
Nikolai Yampolsky,N. J. Fisch,Vladimir Malkin,E. J. Valeo,Ryan Lindberg,Jonathan Wurtele,J. Ren,Shuanglei Li,A. Morozov,Szymon Suckewer +9 more
TL;DR: A plasma-based resonant backward Raman amplifier/compressor for high power amplification of short laser pulses was proposed in this paper, which can convert as much as 90% of the pump energy to the seed pulse.
Journal ArticleDOI
Spatiotemporal response of crystals in x-ray Bragg diffraction
Yuri Shvyd'ko,Ryan Lindberg +1 more
TL;DR: Lindberg and Shvyd'ko as mentioned in this paper studied the spatiotemporal response of crystals in x-ray Bragg diffraction resulting from excitation by an ultrashort, laterally confined xray pulse.
Journal ArticleDOI
Performance of the x-ray free-electron laser oscillator with crystal cavity
TL;DR: In this article, a simulation of the x-ray free-electron laser (FEL) oscillator is presented that includes the frequency-dependent Bragg crystal reflectivity and transverse diffraction and focusing using the two-dimensional FEL code GINGER.
Journal ArticleDOI
Amplification of an ultrashort pulse laser by stimulated Raman scattering of a 1 ns pulse in a low density plasma
R. K. Kirkwood,E. L. Dewald,Christoph Niemann,N. Meezan,Scott Wilks,D. W. Price,Otto Landen,Jonathan Wurtele,A. E. Charman,Ryan Lindberg,Nathaniel Fisch,Vladimir Malkin,E O Valeo +12 more
TL;DR: In this paper, a 1mJ, 1ps, 1200nm seed laser beam is amplified by the interaction with an intersecting 350j, 1ns, 1054nm pump beam in a low density (1×1019∕cm3) plasma.