Journal
PHYSICAL REVIEW B
Volume 62, Issue 16, Pages 10779-10784Publisher
AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.62.10779
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We present a theoretical study of the orbital magnetoresistance in a uniaxial anisotropic metal within the relaxation-time approximation. The appearance of a new dimensionless scale, delta =4t(perpendicular to)/epsilon (F) allows the possibility of a new region at intermediate fields where the magnetoresistance is linear in applied magnetic field for currents flowing along the uniaxial direction. (Here, t(perpendicular to) characterizes the bandwidth along the uniaxial direction.) In the limit of large anisotropy (small delta), corresponding to a quasi-two-dimensional metal made up of weakly coupled layers, we obtain an analytic expression for the magnetoresistance valid for all magnetic fields. We test our analytic results numerically and we compare our expressions with the c-axis magnetoresistance of Sr2RuO4.
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