SYNCmoss software package for fitting Mössbauer spectra measured with a synchrotron Mössbauer source
SYNCmoss is a software package dedicated to fitting Mössbauer spectra measured with a synchrotron Mössbauer source (SMS). Operation conditions of an SMS can be continuously varied from high resolution and low intensity to the opposite extreme. These variations influence the width and shape of the in...
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Format: | Article |
Language: | English |
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International Union of Crystallography
2023-05-01
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Series: | Journal of Synchrotron Radiation |
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Online Access: | http://scripts.iucr.org/cgi-bin/paper?S1600577523001686 |
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author | Sergey Yaroslavtsev |
author_facet | Sergey Yaroslavtsev |
author_sort | Sergey Yaroslavtsev |
collection | DOAJ |
description | SYNCmoss is a software package dedicated to fitting Mössbauer spectra measured with a synchrotron Mössbauer source (SMS). Operation conditions of an SMS can be continuously varied from high resolution and low intensity to the opposite extreme. These variations influence the width and shape of the instrumental function. The main purpose of SYNCmoss is to fit data obtained with instrumental functions of various shapes. SYNCmoss allows the instrumental function to be extracted from the spectrum of a standard absorber, and then to utilize it in the fitting procedures for the samples studied. SYNCmoss is standalone software – it does not require installations of any software environment. Setting input parameters and the fitting procedure are controlled within a graphical user interface. High-intensity mode of the SMS leads to a short acquisition time, allowing for fast (for example, operando) measurements resulting in a long sequence of spectra with close or smoothly varying parameters. For such cases, SYNCmoss provides an option to fit a series of spectra in automatic mode. SYNCmoss provides fitting models for various cases of hyperfine interaction including the full Hamiltonian for the combined interaction. Finally, for generality, the software has the ability to also fit conventional Mössbauer spectra and simple cases of nuclear forward scattering spectra. |
first_indexed | 2024-04-09T14:14:58Z |
format | Article |
id | doaj.art-2fb4cc1237094689afd985b30d58b750 |
institution | Directory Open Access Journal |
issn | 1600-5775 |
language | English |
last_indexed | 2024-04-09T14:14:58Z |
publishDate | 2023-05-01 |
publisher | International Union of Crystallography |
record_format | Article |
series | Journal of Synchrotron Radiation |
spelling | doaj.art-2fb4cc1237094689afd985b30d58b7502023-05-05T11:49:09ZengInternational Union of CrystallographyJournal of Synchrotron Radiation1600-57752023-05-0130359660410.1107/S1600577523001686gy5045SYNCmoss software package for fitting Mössbauer spectra measured with a synchrotron Mössbauer sourceSergey Yaroslavtsev0ESRF– The European Synchrotron, CS40220, 38043 Grenoble Cedex 9, FranceSYNCmoss is a software package dedicated to fitting Mössbauer spectra measured with a synchrotron Mössbauer source (SMS). Operation conditions of an SMS can be continuously varied from high resolution and low intensity to the opposite extreme. These variations influence the width and shape of the instrumental function. The main purpose of SYNCmoss is to fit data obtained with instrumental functions of various shapes. SYNCmoss allows the instrumental function to be extracted from the spectrum of a standard absorber, and then to utilize it in the fitting procedures for the samples studied. SYNCmoss is standalone software – it does not require installations of any software environment. Setting input parameters and the fitting procedure are controlled within a graphical user interface. High-intensity mode of the SMS leads to a short acquisition time, allowing for fast (for example, operando) measurements resulting in a long sequence of spectra with close or smoothly varying parameters. For such cases, SYNCmoss provides an option to fit a series of spectra in automatic mode. SYNCmoss provides fitting models for various cases of hyperfine interaction including the full Hamiltonian for the combined interaction. Finally, for generality, the software has the ability to also fit conventional Mössbauer spectra and simple cases of nuclear forward scattering spectra.http://scripts.iucr.org/cgi-bin/paper?S1600577523001686synchrotron mossbauer sourcesoftwarefitting |
spellingShingle | Sergey Yaroslavtsev SYNCmoss software package for fitting Mössbauer spectra measured with a synchrotron Mössbauer source Journal of Synchrotron Radiation synchrotron mossbauer source software fitting |
title | SYNCmoss software package for fitting Mössbauer spectra measured with a synchrotron Mössbauer source |
title_full | SYNCmoss software package for fitting Mössbauer spectra measured with a synchrotron Mössbauer source |
title_fullStr | SYNCmoss software package for fitting Mössbauer spectra measured with a synchrotron Mössbauer source |
title_full_unstemmed | SYNCmoss software package for fitting Mössbauer spectra measured with a synchrotron Mössbauer source |
title_short | SYNCmoss software package for fitting Mössbauer spectra measured with a synchrotron Mössbauer source |
title_sort | syncmoss software package for fitting mossbauer spectra measured with a synchrotron mossbauer source |
topic | synchrotron mossbauer source software fitting |
url | http://scripts.iucr.org/cgi-bin/paper?S1600577523001686 |
work_keys_str_mv | AT sergeyyaroslavtsev syncmosssoftwarepackageforfittingmossbauerspectrameasuredwithasynchrotronmossbauersource |