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NASA NTRS · 19760014991

Magnetic field generated resistivity maximum in graphite

Abstract

In zero magnetic field, B, the electrical resistivity, rho(O,T) of highly oriented pyrolytic (polycrystalline) graphite drops smoothly with decreasing T, becoming constant below 4 K. However, in a fixed applied magnetic field B, the resistivity rho(B,T) goes through a maximum as a function of T, with larger maximum for larger B. The temperature of the maximum increases with B, but saturates to a constant value near 25 K (exact T depends on sample) at high B. In single crystal graphite a maximum in rho(B,T) as a function of T is also present, but has the effects of Landau level quantization superimposed. Several possible explanations for the rho(B,T) maximum are proposed, but a complete explanation awaits detailed calculations involving the energy band structure of graphite, and the particular scattering mechanisms involved.

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Wollam, J. A., Kreps, L. W., Rojeski, M., Vold, T., Devaty, R.. 1976-01-01. Magnetic field generated resistivity maximum in graphite. https://ntrs.nasa.gov/citations/19760014991

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