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Muon spin rotation in GdSr2Cu2RuO8: Implications
Authors:Dale R Harshman  John D Dow  W J Kossler  D R Noakes  C E Stronach  A J Greer
Institution:1. Physikon Research Corporation , PO Box 1014, Lynden Washington, 98264, USA;2. Physics Department , Arizona State University , Tempe, Arizona, 85287-1504, USA;3. Physics Department , University of Notre Dame , Notre Dame, Indiana, 46556, USA;4. Department of Physics College of William and Mary Williamsburg , Virginia, 23187, USA;5. Physics Department , Arizona State University , Tempe, Arizona, 85287-1504, USA;6. Department of Physics College of William and Mary Williamsburg , Virginia, 23187, USA;7. Department of Physics , Virginia State University , Petersburg, Virginia, 23806, USA;8. Department of Physics , Gonzaga University , Spokane, Washington, 99258, USA
Abstract:

Muon spin rotation measurements are reported for GdSr2Cu2RuO8, a material with an onset temperature for superconductivity of about 45 K (which is virtually the same for its superconducting sister compounds Sr2YRu1? u Cu u O6 and Gd2? z Ce z Sr2Cu2RuO10). The data indicate two magnetic ordering transitions, at about 15 K and about 130 K, in addition to the Gd ordering transition known to occur at about 2.6 K. We tentatively attribute the 130 K transition to Ru and the 15 K transition to Cu ordering, effectively ruling out any superconducting mechanism based on fluctuating magnetic moments, which are frozen below about 15 K. If there is only one mechanism of high-temperature superconductivity, then the three facts that (i) all three sister compounds have essentially the same onset T c for superconductivity and (ii) all three of these compounds contain SrO layers but (iii) only two of the three compounds, GdSr2Cu2RuO8 and Gd2? z Ce z Sr2Cu2RuO10 (and not Sr2YRu1? u Cu u O6) contain cuprate planes imply that the superconducting layers of all three compounds must be the common SrO layers, and not the cuprate planes (which do not occur in Cu-doped Sr2YRuO6). Otherwise the coincidence of onset temperatures must be an accident, and there must be at least two mechanisms of high-T c superconductivity: one for doped Sr2YRuO6 and another for cuprate-plane superconductivity.
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