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Fermi surface reconstruction in (BEDT-TTF)2TlHg(SCN)4

Shinya Uji, Taichi Terashima, H. Aoki, J. S. Brooks, M. Tokumoto, N. Kinoshita, TOYOHIKO KINOSHITA, Y. Tanaka, Hiroyuki Anzai

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Abstract

The Shubnikov-de Haas (SdH) measurements of the two dimensional organic conductor (BEDT- TTF)2TlHg(SCN)4 have been performed to investigate the Fermi surface reconstructed by the spin density wave formation. At 0.05 K, ten different SdH oscillations are found. A model of the reconstructed Fermi surface is proposed on the basis of the relation between the observed SdH frequencies.

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What this paper is about

The Shubnikov-de Haas (SdH) measurements of the two dimensional organic conductor (BEDT- TTF)2TlHg(SCN)4 have been performed to investigate the Fermi surface reconstructed by the spin density wave formation. At 0.05 K, ten different SdH oscillations are found. A model of the reconstructed Fermi surface is proposed on the basis of the relation between the observed SdH frequencies.

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Available abstract

The Shubnikov-de Haas (SdH) measurements of the two dimensional organic conductor (BEDT- TTF)2TlHg(SCN)4 have been performed to investigate the Fermi surface reconstructed by the spin density wave formation. At 0.05 K, ten different SdH oscillations are found. A model of the reconstructed Fermi surface is proposed on the basis of the relation between the observed SdH frequencies.

Key concepts: Fermi surface, Shubnikov–de Haas effect, Condensed matter physics, Conductor, Fermi Gamma-ray Space Telescope, Charge density wave, Chemistry, Fermi gas

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