Molecular polarizability anisotropy of liquid water revealed by terahertz-induced transient orientation

The intermolecular dynamics of liquid water impact most biological processes. Here, the authors use intense terahertz electromagnetic pulses to generate a transient, out-of-equilibrium state of the water network to show that the molecules become oriented and probe the polarizability of this anisotro...

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Autores principales: Peter Zalden, Liwei Song, Xiaojun Wu, Haoyu Huang, Frederike Ahr, Oliver D. Mücke, Joscha Reichert, Michael Thorwart, Pankaj Kr. Mishra, Ralph Welsch, Robin Santra, Franz X. Kärtner, Christian Bressler
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Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/ca1b28dd771a4545a3c9c6f6dc36f0d0
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spelling oai:doaj.org-article:ca1b28dd771a4545a3c9c6f6dc36f0d02021-12-02T15:34:38ZMolecular polarizability anisotropy of liquid water revealed by terahertz-induced transient orientation10.1038/s41467-018-04481-52041-1723https://doaj.org/article/ca1b28dd771a4545a3c9c6f6dc36f0d02018-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-04481-5https://doaj.org/toc/2041-1723The intermolecular dynamics of liquid water impact most biological processes. Here, the authors use intense terahertz electromagnetic pulses to generate a transient, out-of-equilibrium state of the water network to show that the molecules become oriented and probe the polarizability of this anisotropic state.Peter ZaldenLiwei SongXiaojun WuHaoyu HuangFrederike AhrOliver D. MückeJoscha ReichertMichael ThorwartPankaj Kr. MishraRalph WelschRobin SantraFranz X. KärtnerChristian BresslerNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-7 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Peter Zalden
Liwei Song
Xiaojun Wu
Haoyu Huang
Frederike Ahr
Oliver D. Mücke
Joscha Reichert
Michael Thorwart
Pankaj Kr. Mishra
Ralph Welsch
Robin Santra
Franz X. Kärtner
Christian Bressler
Molecular polarizability anisotropy of liquid water revealed by terahertz-induced transient orientation
description The intermolecular dynamics of liquid water impact most biological processes. Here, the authors use intense terahertz electromagnetic pulses to generate a transient, out-of-equilibrium state of the water network to show that the molecules become oriented and probe the polarizability of this anisotropic state.
format article
author Peter Zalden
Liwei Song
Xiaojun Wu
Haoyu Huang
Frederike Ahr
Oliver D. Mücke
Joscha Reichert
Michael Thorwart
Pankaj Kr. Mishra
Ralph Welsch
Robin Santra
Franz X. Kärtner
Christian Bressler
author_facet Peter Zalden
Liwei Song
Xiaojun Wu
Haoyu Huang
Frederike Ahr
Oliver D. Mücke
Joscha Reichert
Michael Thorwart
Pankaj Kr. Mishra
Ralph Welsch
Robin Santra
Franz X. Kärtner
Christian Bressler
author_sort Peter Zalden
title Molecular polarizability anisotropy of liquid water revealed by terahertz-induced transient orientation
title_short Molecular polarizability anisotropy of liquid water revealed by terahertz-induced transient orientation
title_full Molecular polarizability anisotropy of liquid water revealed by terahertz-induced transient orientation
title_fullStr Molecular polarizability anisotropy of liquid water revealed by terahertz-induced transient orientation
title_full_unstemmed Molecular polarizability anisotropy of liquid water revealed by terahertz-induced transient orientation
title_sort molecular polarizability anisotropy of liquid water revealed by terahertz-induced transient orientation
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/ca1b28dd771a4545a3c9c6f6dc36f0d0
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