Giant second-order Zeeman effect in titanium (III) doped caesium gallium alum
Low temperature magnetization data obtained for titanium (III) doped caesium gallium alum show a spectacular deviation from Brillouin behavior with the magnetization highly dependent on the strength of the applied field at a given value of B/T. This arises from unprecedented higher-order contributio...
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Veröffentlicht in: | The Journal of chemical physics 1998-08, Vol.109 (8), p.2967-2970 |
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creator | Tregenna-Piggott, Philip L. W. O’Brien, Mary C. M. Weihe, Ho/gni Güdel, Hans U. |
description | Low temperature magnetization data obtained for titanium (III) doped caesium gallium alum show a spectacular deviation from Brillouin behavior with the magnetization highly dependent on the strength of the applied field at a given value of B/T. This arises from unprecedented higher-order contributions to the magnetization and these measurements afford the determination of the Zeeman coefficients to third order. This anomalous magnetic behavior is a manifestation of Jahn-Teller coupling giving rise to low-lying vibronic states which mix into the ground state through the magnetic field. |
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title | Giant second-order Zeeman effect in titanium (III) doped caesium gallium alum |
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