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000000978 084__ $$2WoS$$aPhysics, Condensed Matter
000000978 1001_ $$0P:(DE-HGF)0$$aStrempfer, J.$$b0
000000978 245__ $$aResonant magnetic x-ray scattering from terbium
000000978 260__ $$aBristol$$bIOP Publ.$$c2008
000000978 300__ $$a445208-1 - 445208-7
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000000978 440_0 $$03703$$aJournal of Physics: Condensed Matter$$v20$$x0953-8984
000000978 500__ $$aWe would like to thank K Attenkofer for fruitful discussions. Work at BESSRC-CAT and use of the Advanced Photon Source was supported by the US Department of Energy, Basic Energy Sciences, Office of Science, Division of Materials Sciences, under contract no. W-31-109-Eng-38 and the State of Illinois under HECA. The Midwest Universities Collaborative Access Team ( MUCAT) sector at the APS is supported by the US Department of Energy, Basic Energy Sciences, Office of Science, through the Ames Laboratory under contract no. W7405-Eng-82. This work has been supported by the BMBF (German Federal Ministry for Education and Research) under contract 05 NA8CJA 8.
000000978 520__ $$aResonant magnetic x-ray scattering from Tb in the spiral phase is studied in great detail. Polarization analysis in the sigma-sigma' and sigma-pi' channels has been performed for magnetic (0, 0, l +/- tau) satellite reflections over the accessible wavevector range Q = 1.9-6.5 angstrom(-1). A characteristic splitting of the resonance signal as a function of energy has been observed at the L-II as well as at the L-III absorption edge. The shape of the resonance depends on Q and is different for the two edges. Up to three components were observed with a separation in energy between 3.3 and 4.9 eV, compared to a core hole lifetime broadening of 2.5 eV, which is in agreement with the density of states in Tb metal.
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