Three-dimensional imaging of carbonyl sulfide and ethyl iodide photodissociation using the pixel imaging mass spectrometry camera.

The Pixel Imaging Mass Spectrometry (PImMS) camera is used in proof-of-principle three-dimensional (3D) imaging experiments on the photodissociation of carbonyl sulfide and ethyl iodide at wavelengths around 230 nm and 245 nm, respectively. Coupling the PImMS camera with DC-sliced velocity-map imagi...

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Main Authors: Amini, K, Blake, S, Brouard, M, Burt, M, Halford, E, Lauer, A, Slater, C, Lee, J, Vallance, C
Format: Journal article
Language:English
Published: American Institute of Physics 2015
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author Amini, K
Blake, S
Brouard, M
Burt, M
Halford, E
Lauer, A
Slater, C
Lee, J
Vallance, C
author_facet Amini, K
Blake, S
Brouard, M
Burt, M
Halford, E
Lauer, A
Slater, C
Lee, J
Vallance, C
author_sort Amini, K
collection OXFORD
description The Pixel Imaging Mass Spectrometry (PImMS) camera is used in proof-of-principle three-dimensional (3D) imaging experiments on the photodissociation of carbonyl sulfide and ethyl iodide at wavelengths around 230 nm and 245 nm, respectively. Coupling the PImMS camera with DC-sliced velocity-map imaging allows the complete three-dimensional Newton sphere of photofragment ions to be recorded on each laser pump-probe cycle with a timing precision of 12.5 ns, yielding velocity resolutions along the time-of-flight axis of around 6–9% in the applications presented.
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spelling oxford-uuid:cfaebf4c-1087-43f1-a3fc-501ef9c7b3342022-03-27T07:44:25ZThree-dimensional imaging of carbonyl sulfide and ethyl iodide photodissociation using the pixel imaging mass spectrometry camera.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:cfaebf4c-1087-43f1-a3fc-501ef9c7b334EnglishSymplectic Elements at OxfordAmerican Institute of Physics2015Amini, KBlake, SBrouard, MBurt, MHalford, ELauer, ASlater, CLee, JVallance, CThe Pixel Imaging Mass Spectrometry (PImMS) camera is used in proof-of-principle three-dimensional (3D) imaging experiments on the photodissociation of carbonyl sulfide and ethyl iodide at wavelengths around 230 nm and 245 nm, respectively. Coupling the PImMS camera with DC-sliced velocity-map imaging allows the complete three-dimensional Newton sphere of photofragment ions to be recorded on each laser pump-probe cycle with a timing precision of 12.5 ns, yielding velocity resolutions along the time-of-flight axis of around 6–9% in the applications presented.
spellingShingle Amini, K
Blake, S
Brouard, M
Burt, M
Halford, E
Lauer, A
Slater, C
Lee, J
Vallance, C
Three-dimensional imaging of carbonyl sulfide and ethyl iodide photodissociation using the pixel imaging mass spectrometry camera.
title Three-dimensional imaging of carbonyl sulfide and ethyl iodide photodissociation using the pixel imaging mass spectrometry camera.
title_full Three-dimensional imaging of carbonyl sulfide and ethyl iodide photodissociation using the pixel imaging mass spectrometry camera.
title_fullStr Three-dimensional imaging of carbonyl sulfide and ethyl iodide photodissociation using the pixel imaging mass spectrometry camera.
title_full_unstemmed Three-dimensional imaging of carbonyl sulfide and ethyl iodide photodissociation using the pixel imaging mass spectrometry camera.
title_short Three-dimensional imaging of carbonyl sulfide and ethyl iodide photodissociation using the pixel imaging mass spectrometry camera.
title_sort three dimensional imaging of carbonyl sulfide and ethyl iodide photodissociation using the pixel imaging mass spectrometry camera
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