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@ARTICLE{Ratner:293505,
author = {Ratner, D. and Abela, R. and Amann, J. and Bohler, D. and
Bouchard, G. and Bostedt, C. and Boyes, M. and Chow, K. and
Cocco, D. and Decker, F. J. and Ding, Y. and Eckman, C.
and Emma, P. and Fairley, D. and Feng, Y. and Field, C. and
Flechsig, U. and Gassner, G. and Hastings, J. and Heimann,
P. and Huang, Z. and Kelez, N. and Krzywinski, J. and Loos,
H. and Lutman, A. and Marinelli, A. and Marcus, G. and
Maxwell, T. and Montanez, P. and Moeller, S. and Morton, D.
and Nuhn, H. D. and Rodes, N. and Schlotter, W. and
Serkez, S. and Stevens, T. and Turner, J. and Walz, D. and
Wu, J. and Behrens, Christopher and Welch, J.},
title = {{E}xperimental {D}emonstration of a {S}oft {X}-{R}ay
{S}elf-{S}eeded {F}ree-{E}lectron {L}aser},
journal = {Physical review letters},
volume = {114},
number = {5},
issn = {1079-7114},
address = {College Park, Md.},
publisher = {APS},
reportid = {PUBDB-2016-00587},
pages = {054801},
year = {2015},
note = {ARD Subtopic (ps-fs Electron and Photon Beams) ergänzen.},
abstract = {The Linac Coherent Light Source has added a self-seeding
capability to the soft x-ray range using a grating
monochromator system. We report the demonstration of soft
x-ray self-seeding with a measured resolving power of
2000–5000, wavelength stability of 10$^{−4}$, and an
increase in peak brightness by a factor of 2–5 across the
photon energy range of 500–1000 eV. By avoiding the need
for a monochromator at the experimental station, the
self-seeded beam can deliver as much as 50-fold higher
brightness to users.},
cin = {MPY},
ddc = {550},
cid = {I:(DE-H253)MPY-20120731},
pnm = {631 - Accelerator R $\&$ D (POF3-631)},
pid = {G:(DE-HGF)POF3-631},
experiment = {EXP:(DE-H253)TESLA-Test-Facility-20150101},
typ = {PUB:(DE-HGF)16},
UT = {WOS:000349441300002},
pubmed = {pmid:25699448},
doi = {10.1103/PhysRevLett.114.054801},
url = {https://bib-pubdb1.desy.de/record/293505},
}