Toggle navigation
reposiTUm
ÜBER REPOSITUM
HILFE
Anmelden
Aktuelles
Browsen nach
Publikationstypen
Organisationseinheiten
Forschende
Projekte
TU Wien Academic Press
Open-Access-Schriftenreihen
Hochschulschriften
Digitalisate
Erscheinungsjahr
Datensatz Zitierlink:
http://hdl.handle.net/20.500.12708/220226
-
Titel:
Attosecond Metrology Comes of Age
en
Zitat:
Kienberger, R., & Krausz, F. (2004). Attosecond Metrology Comes of Age.
Physica Scripta
,
110
, 32–38. https://doi.org/10.1238/Physica.Topical.110a00032
-
Verlags-DOI:
10.1238/Physica.Topical.110a00032
-
Publikationstyp:
Artikel - Forschungsartikel
de
Sprache:
Englisch
-
Autor_innen:
Kienberger, Reinhard
Krausz, Ferenc
-
Organisationseinheit:
E387 - Institut für Photonik
-
Zeitschrift:
Physica Scripta
-
ISSN:
0031-8949
-
Datum (veröffentlicht):
2004
-
Umfang:
7
-
Verlag:
IOP PUBLISHING LTD
-
Peer Reviewed:
Ja
-
Keywords:
attosecond; Ultrafast lasers; X-ray pulses
en
Abstract:
Atoms exposed to a few oscillation cycles of intense visible or near-infrared light are able to emit a single x-ray burst of sub-femtosecond duration (1 fs = 10<sup>-15</sup> s). Precise temporal control of this energetic photon emission can be achieved by full control of the hyperfast field oscillations in the laser pulses driving the emission process. Sub-femtosecond x-ray pulses along with intense, synchronized, waveform-controlled few-cycle laser pulses led to the development of a new measuring apparatus, which has been dubbed a light-field-controlled streak camera. It measures the time-momentum distribution of electrons ejected from atoms following an impulsive excitation by a sub-femtosecond x-ray pulse. From the time-momentum distribution of ejected primary (photo) and secondary (Auger) electrons the excitation dynamics (i.e. characteristics of the exciting x-ray pulse) and the subsequent relaxation of the electron shell of the excited atom, respectively, can be inferred, currently with a resolution of ∼100 attoseconds (1 as = 10<sup>-18</sup> s). The techniques reviewed in this paper offer the potential for advancing time-domain metrology towards the atomic unit of time (24 as). © Physica Scripta 2004.
en
Forschungsschwerpunkte:
Photonics: 100%
-
Wissenschaftszweig:
2020 - Elektrotechnik, Elektronik, Informationstechnik: 100%
-
Enthalten in den Sammlungen:
Article
Zur Langanzeige
Google Scholar
TM
Check