Generation of Attosecond Light Pulses from Gas and Solid State Media
Real-time observation of ultrafast dynamics in the microcosm is a fundamental approach for understanding the internal evolution of physical, chemical and biological systems. Tools for tracing such dynamics are flashes of light with duration comparable to or shorter than the characteristic evolution...
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doaj-05a671b95d424cdfb1d36f18a53260452020-11-24T23:29:43ZengMDPI AGPhotonics2304-67322017-03-01422610.3390/photonics4020026photonics4020026Generation of Attosecond Light Pulses from Gas and Solid State MediaStefanos Chatziathanasiou0Subhendu Kahaly1Emmanouil Skantzakis2Giuseppe Sansone3Rodrigo Lopez-Martens4Stefan Haessler5Katalin Varju6George D. Tsakiris7Dimitris Charalambidis8Paraskevas Tzallas9Foundation for Research and Technology—Hellas, Institute of Electronic Structure & Laser, PO Box 1527, GR71110 Heraklion (Crete), GreeceELI-ALPS, ELI-Hu Kft., Dugonics ter 13, 6720 Szeged, HungaryFoundation for Research and Technology—Hellas, Institute of Electronic Structure & Laser, PO Box 1527, GR71110 Heraklion (Crete), GreeceELI-ALPS, ELI-Hu Kft., Dugonics ter 13, 6720 Szeged, HungaryELI-ALPS, ELI-Hu Kft., Dugonics ter 13, 6720 Szeged, HungaryLaboratoire d’Optique Appliquée, ENSTA-ParisTech, Ecole Polytechnique, CNRS UMR 7639, Université Paris-Saclay, 91761 Palaiseau CEDEX, FranceELI-ALPS, ELI-Hu Kft., Dugonics ter 13, 6720 Szeged, HungaryMax-Planck-Institut für Quantenoptik, D-85748 Garching, GermanyFoundation for Research and Technology—Hellas, Institute of Electronic Structure & Laser, PO Box 1527, GR71110 Heraklion (Crete), GreeceFoundation for Research and Technology—Hellas, Institute of Electronic Structure & Laser, PO Box 1527, GR71110 Heraklion (Crete), GreeceReal-time observation of ultrafast dynamics in the microcosm is a fundamental approach for understanding the internal evolution of physical, chemical and biological systems. Tools for tracing such dynamics are flashes of light with duration comparable to or shorter than the characteristic evolution times of the system under investigation. While femtosecond (fs) pulses are successfully used to investigate vibrational dynamics in molecular systems, real time observation of electron motion in all states of matter requires temporal resolution in the attosecond (1 attosecond (asec) = 10−18 s) time scale. During the last decades, continuous efforts in ultra-short pulse engineering led to the development of table-top sources which can produce asec pulses. These pulses have been synthesized by using broadband coherent radiation in the extreme ultraviolet (XUV) spectral region generated by the interaction of matter with intense fs pulses. Here, we will review asec pulses generated by the interaction of gas phase media and solid surfaces with intense fs IR laser fields. After a brief overview of the fundamental process underlying the XUV emission form these media, we will review the current technology, specifications and the ongoing developments of such asec sources.http://www.mdpi.com/2304-6732/4/2/26high harmonic generationattosecond pulsesultrafast dynamics |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Stefanos Chatziathanasiou Subhendu Kahaly Emmanouil Skantzakis Giuseppe Sansone Rodrigo Lopez-Martens Stefan Haessler Katalin Varju George D. Tsakiris Dimitris Charalambidis Paraskevas Tzallas |
spellingShingle |
Stefanos Chatziathanasiou Subhendu Kahaly Emmanouil Skantzakis Giuseppe Sansone Rodrigo Lopez-Martens Stefan Haessler Katalin Varju George D. Tsakiris Dimitris Charalambidis Paraskevas Tzallas Generation of Attosecond Light Pulses from Gas and Solid State Media Photonics high harmonic generation attosecond pulses ultrafast dynamics |
author_facet |
Stefanos Chatziathanasiou Subhendu Kahaly Emmanouil Skantzakis Giuseppe Sansone Rodrigo Lopez-Martens Stefan Haessler Katalin Varju George D. Tsakiris Dimitris Charalambidis Paraskevas Tzallas |
author_sort |
Stefanos Chatziathanasiou |
title |
Generation of Attosecond Light Pulses from Gas and Solid State Media |
title_short |
Generation of Attosecond Light Pulses from Gas and Solid State Media |
title_full |
Generation of Attosecond Light Pulses from Gas and Solid State Media |
title_fullStr |
Generation of Attosecond Light Pulses from Gas and Solid State Media |
title_full_unstemmed |
Generation of Attosecond Light Pulses from Gas and Solid State Media |
title_sort |
generation of attosecond light pulses from gas and solid state media |
publisher |
MDPI AG |
series |
Photonics |
issn |
2304-6732 |
publishDate |
2017-03-01 |
description |
Real-time observation of ultrafast dynamics in the microcosm is a fundamental approach for understanding the internal evolution of physical, chemical and biological systems. Tools for tracing such dynamics are flashes of light with duration comparable to or shorter than the characteristic evolution times of the system under investigation. While femtosecond (fs) pulses are successfully used to investigate vibrational dynamics in molecular systems, real time observation of electron motion in all states of matter requires temporal resolution in the attosecond (1 attosecond (asec) = 10−18 s) time scale. During the last decades, continuous efforts in ultra-short pulse engineering led to the development of table-top sources which can produce asec pulses. These pulses have been synthesized by using broadband coherent radiation in the extreme ultraviolet (XUV) spectral region generated by the interaction of matter with intense fs pulses. Here, we will review asec pulses generated by the interaction of gas phase media and solid surfaces with intense fs IR laser fields. After a brief overview of the fundamental process underlying the XUV emission form these media, we will review the current technology, specifications and the ongoing developments of such asec sources. |
topic |
high harmonic generation attosecond pulses ultrafast dynamics |
url |
http://www.mdpi.com/2304-6732/4/2/26 |
work_keys_str_mv |
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