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Fizika Tverdogo Tela, 2018 Volume 60, Issue 8, Pages 1515–1524 (Mi ftt9101)

This article is cited in 11 papers

International school-seminar ''Excitons in crystals and semiconductor nanostructures'', dedicated to the 120th anniversary of the birth of E. F. Gross, St. Petersburg, October 10-12, 2017
Semiconductors

Fine structure of Rydberg excitons in cuprous oxide

M.A. Semina

Ioffe Institute, St. Petersburg

Abstract: In 1952, E.F. Gross and N.A. Karryev discovered excitons of big radius also called the Wannier–Mott excitons. Their energy spectrum, response to external electric and magnetic fields, and also elastic deformations of a crystal were extensively studied in the 1960s–1970s. The second wave of interest to excitons in Cu$_2$O crystals appeared comparatively recent, in 2014, after the “giant” highly excited exciton states had been observed in this material. A theoretical description of highly excited exciton states needs, as a rule, new approaches, because, for such states, a deviation from the exactly solved hydrogen-like model becomes substantial and a numerical solution of the Schrödinger equation with allowance made for the features of the crystal energy band structure becomes extremely resource consuming. This report is a brief review of recent theoretical and experimental studies of the fine structure of the exciton energy spectrum in copper protoxide.

DOI: 10.21883/FTT.2018.08.46238.05Gr


 English version:
Physics of the Solid State, 2018, 60:8, 1527–1536

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© Steklov Math. Inst. of RAS, 2024