Bent crystal spectrometer for both frequency and wavenumber resolved x-ray scattering at a seeded free-electron laser

被引:8
|
作者
Zastrau, Ulf [1 ,2 ]
Fletcher, Luke B. [2 ]
Foerster, Eckhart [1 ,3 ]
Galtier, Eric Ch [2 ]
Gamboa, Eliseo [2 ]
Glenzer, Siegfried H. [2 ]
Heimann, Philipp [2 ]
Marschner, Heike [1 ]
Nagler, Bob [2 ]
Schropp, Andreas [2 ]
Wehrhan, Ortrud [1 ]
Lee, Hae Ja [2 ]
机构
[1] Univ Jena, Inst Opt & Quantum Elect, D-07743 Jena, Germany
[2] Stanford Linear Accelerator Ctr SLAC, Menlo Pk, CA 94025 USA
[3] Helmholtz Inst Jena, D-07743 Jena, Germany
来源
REVIEW OF SCIENTIFIC INSTRUMENTS | 2014年 / 85卷 / 09期
关键词
THOMSON SCATTERING; PHASE-TRANSITION; ACCELERATION; PLASMAS; LINES;
D O I
10.1063/1.4894821
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
We present a cylindrically curved GaAs x-ray spectrometer with energy resolution Delta E/E = 1.1 x10(-4) and wave-number resolution of Delta k/k = 3 x 10(-3), allowing plasmon scattering at the resolution limits of the Linac Coherent Light Source (LCLS) x-ray free-electron laser. It spans scattering wavenumbers of 3.6 to 5.2/angstrom in 100 separate bins, with only 0.34% wavenumber blurring. The dispersion of 0.418 eV/13.5 mu m agrees with predictions within 1.3%. The reflection homogeneity over the entire wavenumber range was measured and used to normalize the amplitude of scattering spectra. The proposed spectrometer is superior to a mosaic highly annealed pyrolytic graphite spectrometer when the energy resolution needs to be comparable to the LCLS seeded bandwidth of 1 eV and a significant range of wavenumbers must be covered in one exposure. (c) 2014 AIP Publishing LLC.
引用
收藏
页数:7
相关论文
共 50 条
  • [21] Performance of the x-ray free-electron laser oscillator with crystal cavity
    Lindberg, R. R.
    Kim, K. -J.
    Shvyd'ko, Yu.
    Fawley, W. M.
    PHYSICAL REVIEW SPECIAL TOPICS-ACCELERATORS AND BEAMS, 2011, 14 (01):
  • [22] Experimental Demonstration of a Soft X-Ray Self-Seeded Free-Electron Laser
    Ratner, D.
    Abela, R.
    Amann, J.
    Behrens, C.
    Bohler, D.
    Bouchard, G.
    Bostedt, C.
    Boyes, M.
    Chow, K.
    Cocco, D.
    Decker, F. J.
    Ding, Y.
    Eckman, C.
    Emma, P.
    Fairley, D.
    Feng, Y.
    Field, C.
    Flechsig, U.
    Gassner, G.
    Hastings, J.
    Heimann, P.
    Huang, Z.
    Kelez, N.
    Krzywinski, J.
    Loos, H.
    Lutman, A.
    Marinelli, A.
    Marcus, G.
    Maxwell, T.
    Montanez, P.
    Moeller, S.
    Morton, D.
    Nuhn, H. D.
    Rodes, N.
    Schlotter, W.
    Serkez, S.
    Stevens, T.
    Turner, J.
    Walz, D.
    Welch, J.
    Wu, J.
    PHYSICAL REVIEW LETTERS, 2015, 114 (05)
  • [23] European X-ray Free-Electron Laser
    Kovalchuk, M., V
    Blagov, A. E.
    CRYSTALLOGRAPHY REPORTS, 2022, 67 (05) : 631 - 675
  • [24] European X-ray Free-Electron Laser
    M. V. Kovalchuk
    A. E. Blagov
    Crystallography Reports, 2022, 67 : 631 - 675
  • [25] PROSPECTS FOR AN X-RAY FREE-ELECTRON LASER
    GEABANACLOCHE, J
    MOORE, GT
    SCULLY, MO
    PROCEEDINGS OF THE SOCIETY OF PHOTO-OPTICAL INSTRUMENTATION ENGINEERS, 1984, 453 : 393 - 401
  • [26] Publisher Correction: Seeded X-ray free-electron laser generating radiation with laser statistical properties
    Oleg Yu. Gorobtsov
    Giuseppe Mercurio
    Flavio Capotondi
    Petr Skopintsev
    Sergey Lazarev
    Ivan A. Zaluzhnyy
    Miltcho B. Danailov
    Martina Dell’Angela
    Michele Manfredda
    Emanuele Pedersoli
    Luca Giannessi
    Maya Kiskinova
    Kevin C. Prince
    Wilfried Wurth
    Ivan A. Vartanyants
    Nature Communications, 10
  • [27] High brightness fully coherent x-ray amplifier seeded by a free-electron laser oscillator
    Li, Kai
    Yan, Jiawei
    Feng, Chao
    Zhang, Meng
    Deng, Haixiao
    PHYSICAL REVIEW ACCELERATORS AND BEAMS, 2018, 21 (04):
  • [28] Generating Isolated Attosecond X-Ray Pulses by Wavefront Control in a Seeded Free-Electron Laser
    Xiao, Yaozong
    Feng, Chao
    Liu, Bo
    ULTRAFAST SCIENCE, 2022, 2022
  • [29] Time-resolved protein nanocrystallography using an X-ray free-electron laser
    Aquila, Andrew
    Hunter, Mark S.
    Doak, R. Bruce
    Kirian, Richard A.
    Fromme, Petra
    White, Thomas A.
    Andreasson, Jakob
    Arnlund, David
    Bajt, Sasa
    Barends, Thomas R. M.
    Barthelmess, Miriam
    Bogan, Michael J.
    Bostedt, Christoph
    Bottin, Herve
    Bozek, John D.
    Caleman, Carl
    Coppola, Nicola
    Davidsson, Jan
    DePonte, Daniel P.
    Elser, Veit
    Epp, Sascha W.
    Erk, Benjamin
    Fleckenstein, Holger
    Foucar, Lutz
    Frank, Matthias
    Fromme, Raimund
    Graafsma, Heinz
    Grotjohann, Ingo
    Gumprecht, Lars
    Hajdu, Janos
    Hampton, Christina Y.
    Hartmann, Andreas
    Hartmann, Robert
    Hauriege, Stefan
    Hauser, Guenter
    Hirsemann, Helmut
    Holl, Peter
    Holton, James M.
    Hoemke, Andre
    Johansson, Linda
    Kimmel, Nils
    Kassemeyer, Stephan
    Krasniqi, Faton
    Kuehnel, Kaiuwe
    Liang, Mengning
    Lomb, Lukas
    Malmerberg, Erik
    Marchesini, Stefano
    Martin, Andrew V.
    Maia, Filipe R. N. C.
    OPTICS EXPRESS, 2012, 20 (03): : 2706 - 2716
  • [30] Ultrashort Free-Electron Laser X-ray Pulses
    Helml, Wolfram
    Grguras, Ivanka
    Juranic, Pavle N.
    Duesterer, Stefan
    Mazza, Tommaso
    Maier, Andreas R.
    Hartmann, Nick
    Ilchen, Markus
    Hartmann, Gregor
    Patthey, Luc
    Callegari, Carlo
    Costello, John T.
    Meyer, Michael
    Coffee, Ryan N.
    Cavalieri, Adrian L.
    Kienberger, Reinhard
    APPLIED SCIENCES-BASEL, 2017, 7 (09):