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Approaching the Attosecond Frontier of Dynamics in Matter with the Concept of X-ray Chronoscopy

Blachucki, Wojciech (author)
Polish Acad Sci, Inst Nucl Phys, PL-31342 Krakow, Poland.
Wach, Anna (author)
Polish Acad Sci, Inst Nucl Phys, PL-31342 Krakow, Poland.
Czapla-Masztafiak, Joanna (author)
Polish Acad Sci, Inst Nucl Phys, PL-31342 Krakow, Poland.
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Delcey, Mickael G, 1988- (author)
KTH,Teoretisk kemi och biologi,KTH Royal Inst Technol, Dept Theoret Chem & Biol, S-10691 Stockholm, Sweden.
Arrell, Christopher (author)
Paul Scherrer Inst, CH-5232 Villigen, Switzerland.
Fanselow, Rafal (author)
Polish Acad Sci, Inst Nucl Phys, PL-31342 Krakow, Poland.
Juranic, Pavle (author)
Paul Scherrer Inst, CH-5232 Villigen, Switzerland.
Lundberg, Marcus, 1974- (author)
Uppsala universitet,Molekylär biomimetik
Milne, Christopher (author)
European XFEL GmbH, D-22869 Schenefeld, Germany.
Sá, Jacinto (author)
Uppsala universitet,Fysikalisk kemi,Polish Acad Sci, Inst Phys Chem, PL-01224 Warsaw, Poland.
Szlachetko, Jakub (author)
Polish Acad Sci, Inst Nucl Phys, PL-31342 Krakow, Poland.
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Polish Acad Sci, Inst Nucl Phys, PL-31342 Krakow, Poland Teoretisk kemi och biologi (creator_code:org_t)
2022-02-08
2022
English.
In: Applied Sciences. - : MDPI AG. - 2076-3417. ; 12:3
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Featured Application Herein, an innovative methodology, called X-ray chronoscopy, is proposed for exploration of ultrafast processes in matter with attosecond precision using current XFEL sources. The method is based on measuring the change in an X-ray pulse temporal profile induced by interaction with a medium. X-ray free electron lasers (XFELs) have provided scientists opportunities to study matter with unprecedented temporal and spatial resolutions. However, access to the attosecond domain (i.e., below 1 femtosecond) remains elusive. Herein, a time-dependent experimental concept is theorized, allowing us to track ultrafast processes in matter with sub-fs resolution. The proposed X-ray chronoscopy approach exploits the state-of-the-art developments in terahertz streaking to measure the time structure of X-ray pulses with ultrahigh temporal resolution. The sub-femtosecond dynamics of the saturable X-ray absorption process is simulated. The employed rate equation model confirms that the X-ray-induced mechanisms leading to X-ray transparency can be probed via measurement of an X-ray pulse time structure.

Subject headings

NATURVETENSKAP  -- Fysik -- Atom- och molekylfysik och optik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences -- Atom and Molecular Physics and Optics (hsv//eng)

Keyword

X-ray free-electron laser (XFEL)
X-ray chronoscopy
nonlinear X-ray-matter interaction
sub-femtosecond X-ray techniques

Publication and Content Type

ref (subject category)
art (subject category)

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