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Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 27, 1974 - Issue 3
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Original Articles

Magnetic circular dichroism calculations using the irreducible tensor method

Pages 689-699 | Received 20 Mar 1973, Published online: 22 Aug 2006

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RobertW. Schwartz, HarryG. Brittain, JamesP. Riehl, Warren Yeakel & FrederickS. Richardson. (1977) Magnetic circularly polarized emission and magnetic circular dichroism study of the 7FJ↔5D4 transitions in crystalline Cs2NaTbCl6 . Molecular Physics 34:2, pages 361-379.
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J.C. Collingwood, P.N. Schatz & P.J. McCarthy. (1975) Absorption and magnetic circular dichroism spectra of Ru4+ in Cs2ZrCl6 and Cs2SnBr6 . Molecular Physics 30:2, pages 469-491.
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RobertW. Schwartz. (1975) The electronic structure of Cs2NaEuCl6 . Molecular Physics 30:1, pages 81-95.
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RobertW. Schwartz & Martha Greenblatt. (1975) Absorption and magnetic circular dichroism of the vibronically allowed d-d transitions in Mn2+: CdF2 . Molecular Physics 29:1, pages 97-112.
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Articles from other publishers (13)

Christiane Görller-Walrand & Linda Fluyt. 2010. Handbook on the Physics and Chemistry of Rare Earths Volume 40. Handbook on the Physics and Chemistry of Rare Earths Volume 40 1 107 .
Laurence D. Barron. 2009. Molecular Light Scattering and Optical Activity. Molecular Light Scattering and Optical Activity.
Frank Neese & Edward I. Solomon. (1999) MCD C -Term Signs, Saturation Behavior, and Determination of Band Polarizations in Randomly Oriented Systems with Spin S ≥ 1 / 2 . Applications to S = 1 / 2 and S = 5 / 2 . Inorganic Chemistry 38:8, pages 1847-1865.
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C D Churcher & G E Stedman. (1982) Symmetry restrictions for natural and induced circular dichroism and optical activity for all point groups. Journal of Physics C: Solid State Physics 15:26, pages 5507-5520.
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M. Blaszak. (2006) Spin–Orbit Interaction in Superexchange with Orbital Degeneracy. I. Coupling Coefficients and Operator Algebra for the Chain 0* ⊂ SU2. physica status solidi (b) 109:1, pages 195-210.
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E. Tataru & I. Boskovitz. (2006) The Use of Magnetic Circular Dichroism Measurements in Determining the Reduced Matrix Elements of the Electric‐Dipole Momentum Operator. physica status solidi (b) 105:1.
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Alfons M.F. Hezemans, Peter J.F.M. Van De Coolwijk, Derk J. Stufkens & Gosse Boxhoorn. (1980) Magnetic circular dichroism of group via hexacarbonyls. Chemical Physics Letters 73:3, pages 550-553.
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Bryan R. Hollebone. (1980) Subduced selection rules for vibronic transitions ind 3 octahedral complexes. Theoretica Chimica Acta 56:1, pages 45-60.
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Bryan R. Hollebone. 1979. Recent Advances in Group Theory and Their Application to Spectroscopy. Recent Advances in Group Theory and Their Application to Spectroscopy 603 686 .
E. Tǎtaru & J. Boskovitz. (1977) Magnetic circular dichroism of Ce3+ in lamn. Solid State Communications 23:2, pages 99-104.
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Werner Haberditzl & Michael Vonöwis. (2010) Magnetooptische Effekte an Molekülen in Lösungen. Berichte der Bunsengesellschaft für physikalische Chemie 80:3, pages 191-198.
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. 1976. Irreducible Tensor Methods. Irreducible Tensor Methods 219 221 .
R.M.E. Vliek & P.J. Zandstra. (1975) Magnetic circular dichroism of manganese pentacarbonyl bromide. Chemical Physics Letters 31:3, pages 487-491.
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