Magnetic quantum oscillations in the charge-density-wave state of the organic metals a-(BEDT-TTF)2MHg(SCN)4 with M = K and Tl
Магнитоквантовые осцилляции
DOI:
https://doi.org/10.1063/1.4869592%20Ключові слова:
organic metals, Shubnikov–de Haas effect, de Haas–van Alphen effect, charge-density wave, magnetic breakdown.Анотація
The low-temperature charge-density-wave (CDW) state in the layered organic metals α-(BEDT-TTF)2MHg(SCN)4 has been studied by means of the Shubnikov–de Haas and de Haas–van Alphen effects. In addition to the dominant α-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 α-oscillations of the interlayer magnetoresistance exhibit an anoma-lous 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 α-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.Завантаження
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Опубліковано
2014-02-18
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Kartsovnik, M.; Zverev, V.; Andres, D.; Biberacher, W.; Helm, T.; Grigoriev, P.; Ramazashvili, R.; Kushch, N.; Müller, H. Magnetic Quantum Oscillations in the Charge-Density-Wave State of the Organic Metals a-(BEDT-TTF)2MHg(SCN)4 With M = K and Tl: Магнитоквантовые осцилляции. Fiz. Nizk. Temp. 2014, 40, 484-491.
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