Two-dimensional x-ray correlation spectroscopy of remote core states
Nonlinear all-X-ray signals that involve large core-atom separation compared to the X-ray wavelengths may not be described by the dipole approximation since they contain additional phase factors. Expressions for the rotationally averaged 2D X-ray photon echo signals from randomly oriented systems th...
Main Authors: | , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
AIP Publishing LLC and ACA
2014-01-01
|
Series: | Structural Dynamics |
Online Access: | http://dx.doi.org/10.1063/1.4833560 |
id |
doaj-c5598bb26a4c4cd3866d84814e50d810 |
---|---|
record_format |
Article |
spelling |
doaj-c5598bb26a4c4cd3866d84814e50d8102020-11-24T21:04:44ZengAIP Publishing LLC and ACAStructural Dynamics2329-77782014-01-0111014101014101-1910.1063/1.4833560002401SDYTwo-dimensional x-ray correlation spectroscopy of remote core statesDaniel Healion0Yu Zhang1Jason D. Biggs2Weijie Hua3Shaul Mukamel4Department of Chemistry, University of California, 450 Rowland Hall, Irvine, California 92697-2025, USADepartment of Chemistry, University of California, 450 Rowland Hall, Irvine, California 92697-2025, USADepartment of Chemistry, University of California, 450 Rowland Hall, Irvine, California 92697-2025, USADepartment of Chemistry, University of California, 450 Rowland Hall, Irvine, California 92697-2025, USADepartment of Chemistry, University of California, 450 Rowland Hall, Irvine, California 92697-2025, USANonlinear all-X-ray signals that involve large core-atom separation compared to the X-ray wavelengths may not be described by the dipole approximation since they contain additional phase factors. Expressions for the rotationally averaged 2D X-ray photon echo signals from randomly oriented systems that take this position-dependent phase into account for arbitrary ratio between the core separation and the resonant wavelength are presented. Application is made to the Se K-edge of a selenium dipeptide system.http://dx.doi.org/10.1063/1.4833560 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Daniel Healion Yu Zhang Jason D. Biggs Weijie Hua Shaul Mukamel |
spellingShingle |
Daniel Healion Yu Zhang Jason D. Biggs Weijie Hua Shaul Mukamel Two-dimensional x-ray correlation spectroscopy of remote core states Structural Dynamics |
author_facet |
Daniel Healion Yu Zhang Jason D. Biggs Weijie Hua Shaul Mukamel |
author_sort |
Daniel Healion |
title |
Two-dimensional x-ray correlation spectroscopy of remote core states |
title_short |
Two-dimensional x-ray correlation spectroscopy of remote core states |
title_full |
Two-dimensional x-ray correlation spectroscopy of remote core states |
title_fullStr |
Two-dimensional x-ray correlation spectroscopy of remote core states |
title_full_unstemmed |
Two-dimensional x-ray correlation spectroscopy of remote core states |
title_sort |
two-dimensional x-ray correlation spectroscopy of remote core states |
publisher |
AIP Publishing LLC and ACA |
series |
Structural Dynamics |
issn |
2329-7778 |
publishDate |
2014-01-01 |
description |
Nonlinear all-X-ray signals that involve large core-atom separation compared to the X-ray wavelengths may not be described by the dipole approximation since they contain additional phase factors. Expressions for the rotationally averaged 2D X-ray photon echo signals from randomly oriented systems that take this position-dependent phase into account for arbitrary ratio between the core separation and the resonant wavelength are presented. Application is made to the Se K-edge of a selenium dipeptide system. |
url |
http://dx.doi.org/10.1063/1.4833560 |
work_keys_str_mv |
AT danielhealion twodimensionalxraycorrelationspectroscopyofremotecorestates AT yuzhang twodimensionalxraycorrelationspectroscopyofremotecorestates AT jasondbiggs twodimensionalxraycorrelationspectroscopyofremotecorestates AT weijiehua twodimensionalxraycorrelationspectroscopyofremotecorestates AT shaulmukamel twodimensionalxraycorrelationspectroscopyofremotecorestates |
_version_ |
1716769944304091136 |