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Current-density-functional approach to large quantum dots in intense magnetic fields

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Within current-density-functional theory, we have studied a quantum dot made of 210 electrons confined in a disk geometry. The ground state of this large dot exhibits some features as a function of the magnetic field (Beta) that can be attributed in a clear way to the formation of compressible and incompressible states of the system. The orbital and spin angular momenta, the total energy, ionization and electron chemical potentials of the ground state, as well as the frequencies of far-infrared edge modes are calculated as a function of Beta, and compared with available experimental and theoretical results.

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PI PERICAY, Martí, et al. Current-density-functional approach to large quantum dots in intense magnetic fields. Physical Review B. 1998. Vol. 57, num. 23, pags. 14783-14792. ISSN 0163-1829. [consulted: 4 of August of 2026]. Available at: https://hdl.handle.net/2445/10462

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