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Localization effects in the charge density wave state [4]of the quasi-two-dimensional monophosphate tungsten bronzes {(P{O_2})_4}{(W{O_3})_{2m}}(m = 7,8,9)
Authors:J. Dumas  C. Hess  C. Schlenker  G. Bonfait  E. Gomez Marin  D. Groult  J. Marcus
Affiliation:(1) Laboratoire d'études des Propriétés électroniques des Solides (CNRS), BP 166, 38042 Grenoble Cedex 9, France, FR;(2) Departamento de Quimica, ITN, 2686 Sacavem Codex, Portugal, PT;(3) Faculdade de Ciencias e Tecnologia, Universidade Nova de Lisboa, 2825 Monte de Caparica, Portugal, PT;(4) Laboratoire CRISMAT (CNRS UMR 6508), ISMRA, Université de Caen, 14050 Caen Cedex, France, FR
Abstract:The monophosphate tungsten bronzes (PO 2 ) 4 (WO 3 ) 2m are quasi-two-dimensional conductors which show charge density wave type electronic instabilities. We report electrical resistivity and magnetoresistance measurements down to 0.30 K and in magnetic fields up to 16 T for the m = 7, 8 and 9 members of this family. We show that these compounds exhibit at low temperature an upturn of resistivity and field dependences of the magnetoresistance characteristic of localization effects. We discuss the dimensionality of the regime of localization as m is varied. We show that for m =7, the regime is quasi-two-dimensional and three-dimensional for m = 8, 9. Received 16 September 1999
Keywords:PACS. 71.45.Lr Charge-density-wave systems - 72.15.Gd Galvanomagnetic and other magnetotransport effects
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