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Fermi surface and quasiparticle dynamics of Na(x)CoO2 x=0.7 investigated by Angle-Resolved Photoemission Spectroscopy

M. Z. Hasan, Y. -D. Chuang, A. P. Kuprin, Y. Kong, D. Qian, Y. W. Li, B. L. Mesler, Z. Hussain, A. V. Fedorov, R. Kimmerling, E. Rotenberg, K. Rossnagel, H. Koh, N. S. Rogado, M. L. Foo, R. J. Cava

cond-mat.str-elarXiv:cond-mat/0308438

Abstract

We present an angle-resolved photoemission study of Na0.7CoO2, the host cobaltate of the NaxCoO2.yH2O series. Our results show a large hexagonal-like hole-type Fermi surface, an extremely narrow strongly renormalized quasiparticle band and a small Fermi velocity. Along the Gamma to M high symmetry line, the quasiparticle band crosses the Fermi level from M toward Gamma consistent with a negative sign of effective single-particle hopping (t ): t is estimated to be about 8 meV which is on the order of exchange coupling J in this system. This suggests that t ~ J ~ 10 meV is an important energy scale in the system. Quasiparticles are well defined only in the T-linear resistivity regime. Small single particle hopping and unconventional quasiparticle dynamics may have implications for understanding the unusual behavior of this new class of compounds.

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