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Article Dans Une Revue Solid State Sciences Année : 2005

Charge density wave properties of the quasi two-dimensional purple molybdenum bronze KMo6O17

Résumé

The purple molybdenum bronze KMo6O17 is a quasi-two-dimensional compound which shows a Peierls transition towards a commensurate metallic CDW state. Electron spectroscopy (ARUPS), Scanning Tunnelling Microscopy (STM) and spectroscopy (STS) as well as high magnetic field studies are reported. ARUPS studies corroborate the model of the hidden nesting and provide a value of the CDW vector in good agreement with other measurements. STM studies visualize the triple-q CDW in real space. This is consistent with other measurements of the CDW vector. STS studies provide a value of several 10 meV for the average CDW gap. High magnetic field measurements performed in pulsed fields up to 55 T establish that first order transitions to smaller gap states take place at low temperature. These transitions are ascribed to Pauli type coupling. A phase diagram summarizing all observed anomalies and transitions is presented.
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hal-00015951 , version 1 (09-02-2022)

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Paternité - Pas d'utilisation commerciale

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Hafid Balaska, Jean Dumas, Hervé Guyot, P. Mallet, Jacques Marcus, et al.. Charge density wave properties of the quasi two-dimensional purple molybdenum bronze KMo6O17. Solid State Sciences, 2005, 7 (6), pp.690-698. ⟨10.1016/j.solidstatesciences.2004.11.015⟩. ⟨hal-00015951⟩
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