Test of advanced hyperfine structure theory by precision radio-frequency and laser spectroscopy in molybdenum

Publikation: Beiträge in ZeitschriftenZeitschriftenaufsätzeForschungbegutachtet

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Test of advanced hyperfine structure theory by precision radio-frequency and laser spectroscopy in molybdenum. / Brenner, T.; Büttgenbach, Stephanus; Jacobs, Jürgen et al.

in: Zeitschrift für Physik D: Atoms, Molecules and Clusters, Jahrgang 10, Nr. 1, 01.03.1988, S. 59 - 70.

Publikation: Beiträge in ZeitschriftenZeitschriftenaufsätzeForschungbegutachtet

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Brenner T, Büttgenbach S, Jacobs J, Koster M, Roeder H, Rupprecht W et al. Test of advanced hyperfine structure theory by precision radio-frequency and laser spectroscopy in molybdenum. Zeitschrift für Physik D: Atoms, Molecules and Clusters. 1988 Mär 1;10(1):59 - 70. doi: 10.1007/BF01425581

Bibtex

@article{3d57313efb024314815d65765f75b8cf,
title = "Test of advanced hyperfine structure theory by precision radio-frequency and laser spectroscopy in molybdenum",
abstract = "The hyperfine structure splittings of 32 even parity states and of 26 odd partity states of molybdenum have been measured by atomic beam magnetic resonance and by laser induced fluorescence. The analysis of the hyperfine structure data of the even parity configurations (4d+5s)6 yields experimental evidence for second order hyperfine interactions. In addition, theg J factors of 19 fine structure levels have been determined in order to test the quality of intermediate coupling wave functions for the (4d+5s)6 configurations.",
keywords = "Informatics, 31.30.Gs, 32.10.Hq, 32.10.Tb, 35.10.Fk",
author = "T. Brenner and Stephanus B{\"u}ttgenbach and J{\"u}rgen Jacobs and M. Koster and H. Roeder and W. Rupprecht and F. Tr{\"a}ber",
note = "The journal is now called The European Physical Journal D - Atomic, Molecular, Optical and Plasma Physics",
year = "1988",
month = mar,
day = "1",
doi = "10.1007/BF01425581",
language = "English",
volume = "10",
pages = "59 -- 70",
journal = "Zeitschrift f{\"u}r Physik D: Atoms, Molecules and Clusters",
issn = "1434-6060",
publisher = "Springer",
number = "1",

}

RIS

TY - JOUR

T1 - Test of advanced hyperfine structure theory by precision radio-frequency and laser spectroscopy in molybdenum

AU - Brenner, T.

AU - Büttgenbach, Stephanus

AU - Jacobs, Jürgen

AU - Koster, M.

AU - Roeder, H.

AU - Rupprecht, W.

AU - Träber, F.

N1 - The journal is now called The European Physical Journal D - Atomic, Molecular, Optical and Plasma Physics

PY - 1988/3/1

Y1 - 1988/3/1

N2 - The hyperfine structure splittings of 32 even parity states and of 26 odd partity states of molybdenum have been measured by atomic beam magnetic resonance and by laser induced fluorescence. The analysis of the hyperfine structure data of the even parity configurations (4d+5s)6 yields experimental evidence for second order hyperfine interactions. In addition, theg J factors of 19 fine structure levels have been determined in order to test the quality of intermediate coupling wave functions for the (4d+5s)6 configurations.

AB - The hyperfine structure splittings of 32 even parity states and of 26 odd partity states of molybdenum have been measured by atomic beam magnetic resonance and by laser induced fluorescence. The analysis of the hyperfine structure data of the even parity configurations (4d+5s)6 yields experimental evidence for second order hyperfine interactions. In addition, theg J factors of 19 fine structure levels have been determined in order to test the quality of intermediate coupling wave functions for the (4d+5s)6 configurations.

KW - Informatics

KW - 31.30.Gs

KW - 32.10.Hq

KW - 32.10.Tb

KW - 35.10.Fk

UR - http://www.scopus.com/inward/record.url?scp=34250091570&partnerID=8YFLogxK

UR - https://www.mendeley.com/catalogue/e430f535-10e1-3fb4-af3b-c427c85209e3/

U2 - 10.1007/BF01425581

DO - 10.1007/BF01425581

M3 - Journal articles

VL - 10

SP - 59

EP - 70

JO - Zeitschrift für Physik D: Atoms, Molecules and Clusters

JF - Zeitschrift für Physik D: Atoms, Molecules and Clusters

SN - 1434-6060

IS - 1

ER -

DOI