paper

Purely orbital diamagnetic to paramagnetic fluctuation of quasi two-dimensional carriers under in-plane magnetic field

arXiv:0802.0384 · doi:10.1088/0953-8984/21/1/015304

Abstract

An external magnetic field, , applied parallel to a quasi two-dimensional system modifies quantitatively and qualitatively the density of states. Using a self-consistent numerical approach, we study how this affects the entropy, , the free energy, , and the magnetization, , for different sheet carrier concentrations, . As a prototype system we employ III-V double quantum wells. We find that although is mainly in the opposite direction of , the system is not linear. Surprisingly swings between negative and positive values, i.e., we predict an entirely orbital diamagnetic to paramagnetic fluctuation. This phenomenon is important compared to the ideal de Haas-van Alphen effect i.e. the corresponding phenomenon under perpendicular magnetic field.

4 pages, 6 figures

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