Anomalous Rare Earths and Actinides. Valence Fluctuation and by J.X. Boucherle, J. Flouquet and C. Lacroix (Eds.)

By J.X. Boucherle, J. Flouquet and C. Lacroix (Eds.)

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Vettier, P. Morin and J. Flouquet, to be published. 35] H. M. J. Birgeneau, Phys. Rev. Lett. 39 (1977) 1021. ;36] C G . A. Wedgewood, Phys. Rev. Lett. 16 (1966) 513. [37] C. Stassis, J. Arthur, C F . D. Axe, B. Batlogg, J. Remeika, Z. L. S. Edelstein, Phys. Rev. B34 (1986) 4382. [38] A. X. Boucherie, P. Convert, J. Flouquet, J. Palleau and J. Schweizer, Solid State Commun. 34 (1980) 293. [39] B. F. X. Boucherie, J. L. Buevoz, J. Appi. Phys. 50 (1979) 2300. M. Effantin, J. Rossat-Mignod, P. Burlet, H.

C. Achart, J. Magn. Magn. Mat. 52 (1985) 111. [45] H. Takahashi and T. Kasuya, J. Phys. C18 (1985) 2697. L. E. CROW, P. SCHLOTTMANN, T. MIHALISIN, S. P. S. BROOKS* Physics Department, Temple University, Philadelphia, PA 19122, USA CePb 3 has been shown to be an antiferromagnetic, heavy fermion system with an unusually large negative magnetoresistance at high magnetic fields and very low temperatures. 0 K and H ^ 20 T. There has been a recent surge of interest in the fundamental properties characterizing heavy fermion (HF) and other narrow band systems [1-3].

P. S. BROOKS* Physics Department, Temple University, Philadelphia, PA 19122, USA CePb 3 has been shown to be an antiferromagnetic, heavy fermion system with an unusually large negative magnetoresistance at high magnetic fields and very low temperatures. 0 K and H ^ 20 T. There has been a recent surge of interest in the fundamental properties characterizing heavy fermion (HF) and other narrow band systems [1-3]. Much of this interest has been focused on establishing the nature of the ground state for these highly correlated electron systems.

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