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- W2093790535 abstract "The theory of magnetoquantum oscillations in a two-dimensional (2D) metal with overlapping 2D and 1D energy bands, admitting multiple sets of closed and open orbits and a multisheet Fermi surface, is elaborated on. A system of coupled nonlinear equations for the chemical potential and magnetization oscillations is obtained in a level and harmonic representation. In the framework of a parametrical solution the resulting wave form of oscillation patterns, due to various fundamental frequencies interconnected through chemical potential oscillations, is calculated at any temperature and strength of reservoirs of magnetically unperturbed background states. Analytical expressions for renormalized Fourier harmonics of fundamental and combination frequencies (satellites of the higher frequency and its harmonics) are obtained dependent on the strength of the reservoir. The criterion of validity of these expressions as solutions of nonlinear equations is discussed. The symmetrization effect of the oscillation wave form is found in a multiband electron system without a reservoir of background states. It can be enhanced by the presence of a reservoir. The symmetrization effect is reflected via the nonstandard behavior of second harmonics: nonmonotonic temperature--magnetic-field dependence and disappearance at certain temperatures and magnetic fields (second harmonics zeros). Effects of this kind can also be revealed in heterostructures with external reservoirs of background states." @default.
- W2093790535 created "2016-06-24" @default.
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- W2093790535 date "2003-08-26" @default.
- W2093790535 modified "2023-10-16" @default.
- W2093790535 title "Interconnected magnetoquantum de Haas–van Alphen oscillations in a two-dimensional metal: Wave form and Fourier harmonics" @default.
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- W2093790535 doi "https://doi.org/10.1103/physrevb.68.054423" @default.
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