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Ultra-high-resolution inelastic X-ray scattering at high-repetition-rate self-seeded X-ray free-electron lasers

Inelastic X-ray scattering (IXS) is an important tool for studies of equilibrium dynamics in condensed matter. A new spectrometer recently proposed for ultra-high-resolution IXS (UHRIX) has achieved 0.6 meV and 0.25 nm(−1) spectral and momentum-transfer resolutions, respectively. However, further im...

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Autores principales: Chubar, Oleg, Geloni, Gianluca, Kocharyan, Vitali, Madsen, Anders, Saldin, Evgeni, Serkez, Svitozar, Shvyd’ko, Yuri, Sutter, John
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4768765/
https://www.ncbi.nlm.nih.gov/pubmed/26917127
http://dx.doi.org/10.1107/S1600577515024844
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author Chubar, Oleg
Geloni, Gianluca
Kocharyan, Vitali
Madsen, Anders
Saldin, Evgeni
Serkez, Svitozar
Shvyd’ko, Yuri
Sutter, John
author_facet Chubar, Oleg
Geloni, Gianluca
Kocharyan, Vitali
Madsen, Anders
Saldin, Evgeni
Serkez, Svitozar
Shvyd’ko, Yuri
Sutter, John
author_sort Chubar, Oleg
collection PubMed
description Inelastic X-ray scattering (IXS) is an important tool for studies of equilibrium dynamics in condensed matter. A new spectrometer recently proposed for ultra-high-resolution IXS (UHRIX) has achieved 0.6 meV and 0.25 nm(−1) spectral and momentum-transfer resolutions, respectively. However, further improvements down to 0.1 meV and 0.02 nm(−1) are required to close the gap in energy–momentum space between high- and low-frequency probes. It is shown that this goal can be achieved by further optimizing the X-ray optics and by increasing the spectral flux of the incident X-ray pulses. UHRIX performs best at energies from 5 to 10 keV, where a combination of self-seeding and undulator tapering at the SASE-2 beamline of the European XFEL promises up to a 100-fold increase in average spectral flux compared with nominal SASE pulses at saturation, or three orders of magnitude more than what is possible with storage-ring-based radiation sources. Wave-optics calculations show that about 7 × 10(12) photons s(−1) in a 90 µeV bandwidth can be achieved on the sample. This will provide unique new possibilities for dynamics studies by IXS.
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spelling pubmed-47687652016-03-02 Ultra-high-resolution inelastic X-ray scattering at high-repetition-rate self-seeded X-ray free-electron lasers Chubar, Oleg Geloni, Gianluca Kocharyan, Vitali Madsen, Anders Saldin, Evgeni Serkez, Svitozar Shvyd’ko, Yuri Sutter, John J Synchrotron Radiat Research Papers Inelastic X-ray scattering (IXS) is an important tool for studies of equilibrium dynamics in condensed matter. A new spectrometer recently proposed for ultra-high-resolution IXS (UHRIX) has achieved 0.6 meV and 0.25 nm(−1) spectral and momentum-transfer resolutions, respectively. However, further improvements down to 0.1 meV and 0.02 nm(−1) are required to close the gap in energy–momentum space between high- and low-frequency probes. It is shown that this goal can be achieved by further optimizing the X-ray optics and by increasing the spectral flux of the incident X-ray pulses. UHRIX performs best at energies from 5 to 10 keV, where a combination of self-seeding and undulator tapering at the SASE-2 beamline of the European XFEL promises up to a 100-fold increase in average spectral flux compared with nominal SASE pulses at saturation, or three orders of magnitude more than what is possible with storage-ring-based radiation sources. Wave-optics calculations show that about 7 × 10(12) photons s(−1) in a 90 µeV bandwidth can be achieved on the sample. This will provide unique new possibilities for dynamics studies by IXS. International Union of Crystallography 2016-02-12 /pmc/articles/PMC4768765/ /pubmed/26917127 http://dx.doi.org/10.1107/S1600577515024844 Text en © Oleg Chubar et al. 2016 http://creativecommons.org/licenses/by/2.0/uk/ This is an open-access article distributed under the terms of the Creative Commons Attribution Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.
spellingShingle Research Papers
Chubar, Oleg
Geloni, Gianluca
Kocharyan, Vitali
Madsen, Anders
Saldin, Evgeni
Serkez, Svitozar
Shvyd’ko, Yuri
Sutter, John
Ultra-high-resolution inelastic X-ray scattering at high-repetition-rate self-seeded X-ray free-electron lasers
title Ultra-high-resolution inelastic X-ray scattering at high-repetition-rate self-seeded X-ray free-electron lasers
title_full Ultra-high-resolution inelastic X-ray scattering at high-repetition-rate self-seeded X-ray free-electron lasers
title_fullStr Ultra-high-resolution inelastic X-ray scattering at high-repetition-rate self-seeded X-ray free-electron lasers
title_full_unstemmed Ultra-high-resolution inelastic X-ray scattering at high-repetition-rate self-seeded X-ray free-electron lasers
title_short Ultra-high-resolution inelastic X-ray scattering at high-repetition-rate self-seeded X-ray free-electron lasers
title_sort ultra-high-resolution inelastic x-ray scattering at high-repetition-rate self-seeded x-ray free-electron lasers
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4768765/
https://www.ncbi.nlm.nih.gov/pubmed/26917127
http://dx.doi.org/10.1107/S1600577515024844
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