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February 21, 2026JJAP Conference Proceedings0 citationsOpen Access

Non-linear transport in field-induced insulating states of graphite

MTMasashi TokunagaKAK. AkibaHYHiroshi Yaguchi

Key Points

  • To investigate the origin of non-linear transport phenomena in graphite under high magnetic fields.
  • Conducted high-field magnetotransport measurements on single crystals of graphite
  • Applied pulsed-magnetic fields up to 75 T
  • Analyzed longitudinal magnetoresistance across multiple phases
  • Observed distinct non-linearity in longitudinal magnetoresistance
  • Identified non-linear effects in both the first and second field-induced phases
  • Reinforced debate over the origin of phase transitions in graphite

Abstract

Graphite exhibits multi-stage phase transitions in the quantum-limit states realized by magnetic fields applied along the c-axis. Despite extensive studies on this phenomenon, the origin remains a matter of debate to this day. We performed high-field magnetotransport measurements on single crystals of graphite, focusing on the non-linear conductivity in pulsed-magnetic fields of up to 75 T. The longitudinal magnetoresistance exhibits distinct non-linearity not only in the first but also in the second field-induced phases.

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Cite This Study

Tokunaga et al. (2026) studied this question.

synapsesocial.com/papers/69994a7f873532290d01ef77https://doi.org/10.56646/jjapcp.12.0_011004
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