NSR Query Results
Output year order : Descending NSR database version of May 3, 2024. Search: Author = L.Windholz Found 14 matches. 2017ST02 At.Data Nucl.Data Tables 113, 350 (2017) E.Stachowska, J.Dembczynski, L.Windholz, J.Ruczkowski, M.Elantkowska Extended analysis of the system of even configurations of Ta II ATOMIC PHYSICS Ta; analyzed fine- and hyperfine structure for even parity configurations of Ta II; deduced level assignments, values of level energies, gJ-Lande factors and hyperfine structure constants.
doi: 10.1016/j.adt.2016.06.001
2005JA13 Phys.Scr. 71, 611 (2005) N.Jaritz, L.Windholz, D.Messnarz, H.Jager, R.Engleman, Jr. Investigation of the Hyperfine Structure of Ta I Lines (IX) NUCLEAR MOMENTS Ta; measured hfs. Laser-induced fluorescence.
doi: 10.1088/0031-8949/71/6/007
2004JA09 Phys.Scr. 69, 441 (2004) N.Jaritz, G.H.Guthohrlein, L.Windholz, D.Messnarz, R.Engleman, Jr., J.C.Pickering, H.Jager Investigation for the Hyperfine Structure of Ta I lines (VIII) NUCLEAR MOMENTS Ta; measured hfs; deduced hyperfine constants. Laser spectroscopy.
doi: 10.1238/Physica.Regular.069a00441
2003ME14 Phys.Scr. 68, 170 (2003); Erratum Phys.Scr. 69, 432 (2004) D.Messnarz, N.Jaritz, B.Arcimowicz, V.O.Zilio, R.Engleman, Jr., J.C.Pickering, H.Jager, G.H.Guthohrlein, L.Windholz Investigation of the Hyperfine Structure of Ta I Lines (VII) NUCLEAR MOMENTS Ta; measured hfs; deduced hyperfine constants. Laser-induced fluorescence.
doi: 10.1238/Physica.Regular.068a00170
2002JA05 Eur.Phys.J. D 18, 267 (2002) Investigation of the Hyperfine Structure of Ta I Lines (VI) NUCLEAR MOMENTS Ta; measured hfs; deduced interaction constants.
doi: 10.1007/s10053-002-8830-3
2001AR02 Eur.Phys.J. D 13, 187 (2001) B.Arcimowicz, A.Huss, S.Roth, N.Jaritz, D.Messnarz, G.H.Guthohrlein, H.Jager, L.Windholz Investigation of the Hyperfine Structure of Ta I Lines (V) NUCLEAR MOMENTS Ta; measured hfs.
doi: 10.1007/s100530170265
1996MO13 Z.Phys. D36, 129 (1996) H.Mocnik, B.Arcimowicz, W.Salmhofer, L.Windholz, G.H.Guthohrlein Investigation of the Hyperfine Structure of Ta I-Lines (III) NUCLEAR MOMENTS 181Ta; measured hfs; deduced hyperfine, electric quadrupole interactions parameters.
doi: 10.1007/BF01426627
1995HA48 Z.Phys. D33, 97 (1995) H.Hammer, G.H.Guthohrlein, M.Elantkovska, V.Funtov, G.Gwehenberger, L.Windholz Investigation of the Hyperfine Structure of Ta I-Lines (II) NUCLEAR MOMENTS Ta; measured hfs; deduced magnetic hyperfine, electron quadrupole interaction constants. Saturated laser spectroscopy.
1994MU24 Z.Phys. D30, 13 (1994) The Sodium D2-Line in Electric and Magnetic Fields. Part III: Adiabatic Hyperfine Level Transfer in Perpendicularly Crossed Fields NUCLEAR MOMENTS 23Na; calculated hfs behavior; deduced adiabatic field presence, strength changes role in level transfer. Electric, magnetic fields, adiabatic level transfer, perpendicularly crossed fields.
doi: 10.1007/BF01437472
1992BA56 Z.Phys. D23, 151 (1992) A.Baier, H.O.Behrens, G.H.Guthohrlein, L.Windholz Hyperfine Structure Investigations of the Tantalum I Blend (λ) = 6356.14 A0 NUCLEAR MOMENTS 180,181Ta; measured hfs; deduced hyperfine constants.
doi: 10.1007/BF01436737
1991PI11 Z.Phys. D21, 189 (1991) W.Pietsch, G.H.Guthohrlein, H.Jager, L.Windholz Hyperfinestructure Constants of the Eu-I Level 4f76s6p z6P7/2 NUCLEAR MOMENTS 151,153Eu; measured hfs, isotope shifts; deduced hyperfine constants.
doi: 10.1007/BF01426370
1990WI07 Z.Phys. D16, 41 (1990) L.Windholz, H.Jager, M.Musso, G.Zerza Laserspectroscopic Investigations of the Lithium-D-Lines in Magnetic Fields NUCLEAR MOMENTS 6,7Li; measured hfs; deduced hyperfine constants. Laser spectroscopy.
doi: 10.1007/BF01831564
1988WI13 Z.Phys. D8, 239 (1988) Zeeman- and Paschen-Back-Effect of the Hyperfine Structure of the Sodium D2-Line ATOMIC PHYSICS Na; measured hfs. Laser atomic beam spectroscopy.
doi: 10.1007/BF01436947
1985WI13 Z.Phys. A322, 203 (1985) Zeeman- and Paschen-Back-Effect of the Hyperfine Structure of the Sodium D1-Line ATOMIC PHYSICS Na; measured Zeeman, Paschen-Back effects in hfs. High resolution laser atomic beam spectroscopy.
doi: 10.1007/BF01411883
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