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      Magnetic quantum oscillations in the charge-density-wave state of the organic metals \(\alpha \)-(BEDT-TTF)\(_2\)MHg(SCN)\(_4\) with M = K and Tl

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          Abstract

          The low-temperature charge-density-wave (CDW) state in the layered organic metals \(\alpha \)-(BEDT-TTF)\(_2\)MHg(SCN)\(_4\) has been studied by means of the Shubnikov -- de Haas and de Haas -- van Alphen effects. In addition to the dominant alpha-frequency, which is also observed in the normal state, both the magnetoresistance and magnetic torque possess a slowly oscillating component. These slow oscillations provide a firm evidence for the CDW-induced reconstruction of the original cylindrical Fermi surface. The alpha-oscillations of the interlayer magnetoresistance exhibit an anomalous phase inversion in the CDW state, whereas the de Haas -- van Alphen signal maintains the normal phase. We argue that the anomaly may be attributed to the magnetic-breakdown origin of the alpha-oscillations in the CDW state. A theoretical model illustrating the possibility of a phase inversion in the oscillating interlayer conductivity in the presence of a spatially fluctuating magnetic breakdown gap is proposed.

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          Crystal and Electronic Structures of (BEDT–TTF)2[MHg(SCN)4](M=K and NH4)

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            High-field magnetotransport and Fermi-surface topology in the novel quasi-two-dimensional organic conductor bis(ethylenedithiolo)tetrathiafulvalenium mercuric postassium thiocyanate, (BEDT-TTF\({)}_{2}\)KHg(SCN\({)}_{4}\)

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              Numerical model of quantum oscillations in quasi-two-dimensional organic metals in high magnetic fields

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                Author and article information

                Journal
                22 November 2013
                Article
                10.1063/1.4869592
                1311.5744
                30c24002-a540-4747-90df-78be5718b15b

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

                History
                Custom metadata
                Low Temp. Phys. 40, No. 4 377-383 (2014)
                19 pages, 4 figures; submitted to Low Temperature Physics, special issue "New Trends of Fermiology" dedicated to the 60-th anniversary of the Lifshitz-Kosevich theory
                cond-mat.str-el

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