THE HYPERFINE STRUCTURES OF CUCL AND CUBR IN THEIR GROUND-STATES STUDIED BY MICROWAVE FOURIER-TRANSFORM SPECTROSCOPY

The hyperfine structure of the J = 1 ← 0 rotational transition of CuCl as well as the J = 3 ← 2, 2 ← 1, and 1 ← 0 rotational transitions of CuBr in the v = 0 vibrational level have been investigated using a microwave Fourier transform spectrometer. The molecules were produced by laser ablation of th...

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Main Authors: Low, R, Varberg, T, Connelly, J, Auty, A, Howard, B, Brown, J
格式: Journal article
语言:English
出版: 1993
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author Low, R
Varberg, T
Connelly, J
Auty, A
Howard, B
Brown, J
author_facet Low, R
Varberg, T
Connelly, J
Auty, A
Howard, B
Brown, J
author_sort Low, R
collection OXFORD
description The hyperfine structure of the J = 1 ← 0 rotational transition of CuCl as well as the J = 3 ← 2, 2 ← 1, and 1 ← 0 rotational transitions of CuBr in the v = 0 vibrational level have been investigated using a microwave Fourier transform spectrometer. The molecules were produced by laser ablation of the copper halide followed by an axial supersonic expansion into a near-semiconfocal Fabry-Perot cavity. The analysis of the hyperfine structure yielded improved values of the rotational and electric quadrupole constants and determined the nuclear spin-rotation constants for the first time. The physical implications of these results are discussed. © 1993 Academic Press. All rights reserved.
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spelling oxford-uuid:f5be1de1-f073-4a2e-a0fd-634b592fbf5d2022-03-27T12:29:31ZTHE HYPERFINE STRUCTURES OF CUCL AND CUBR IN THEIR GROUND-STATES STUDIED BY MICROWAVE FOURIER-TRANSFORM SPECTROSCOPYJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:f5be1de1-f073-4a2e-a0fd-634b592fbf5dEnglishSymplectic Elements at Oxford1993Low, RVarberg, TConnelly, JAuty, AHoward, BBrown, JThe hyperfine structure of the J = 1 ← 0 rotational transition of CuCl as well as the J = 3 ← 2, 2 ← 1, and 1 ← 0 rotational transitions of CuBr in the v = 0 vibrational level have been investigated using a microwave Fourier transform spectrometer. The molecules were produced by laser ablation of the copper halide followed by an axial supersonic expansion into a near-semiconfocal Fabry-Perot cavity. The analysis of the hyperfine structure yielded improved values of the rotational and electric quadrupole constants and determined the nuclear spin-rotation constants for the first time. The physical implications of these results are discussed. © 1993 Academic Press. All rights reserved.
spellingShingle Low, R
Varberg, T
Connelly, J
Auty, A
Howard, B
Brown, J
THE HYPERFINE STRUCTURES OF CUCL AND CUBR IN THEIR GROUND-STATES STUDIED BY MICROWAVE FOURIER-TRANSFORM SPECTROSCOPY
title THE HYPERFINE STRUCTURES OF CUCL AND CUBR IN THEIR GROUND-STATES STUDIED BY MICROWAVE FOURIER-TRANSFORM SPECTROSCOPY
title_full THE HYPERFINE STRUCTURES OF CUCL AND CUBR IN THEIR GROUND-STATES STUDIED BY MICROWAVE FOURIER-TRANSFORM SPECTROSCOPY
title_fullStr THE HYPERFINE STRUCTURES OF CUCL AND CUBR IN THEIR GROUND-STATES STUDIED BY MICROWAVE FOURIER-TRANSFORM SPECTROSCOPY
title_full_unstemmed THE HYPERFINE STRUCTURES OF CUCL AND CUBR IN THEIR GROUND-STATES STUDIED BY MICROWAVE FOURIER-TRANSFORM SPECTROSCOPY
title_short THE HYPERFINE STRUCTURES OF CUCL AND CUBR IN THEIR GROUND-STATES STUDIED BY MICROWAVE FOURIER-TRANSFORM SPECTROSCOPY
title_sort hyperfine structures of cucl and cubr in their ground states studied by microwave fourier transform spectroscopy
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