04018nam 22006855 450 991099649540332120250413023604.09783031872785303187278910.1007/978-3-031-87278-5(CKB)38429203500041(DE-He213)978-3-031-87278-5(MiAaPQ)EBC32007538(Au-PeEL)EBL32007538(EXLCZ)993842920350004120250413d2025 u| 0engur|||||||||||txtrdacontentcrdamediacrrdacarrierExcitons in Semiconductors /by Subhabrata Dhar1st ed. 2025.Cham :Springer Nature Switzerland :Imprint: Springer,2025.1 online resource (XVIII, 170 p. 91 illus., 72 illus. in color.) Springer Series in Solid-State Sciences,2197-4179 ;2049783031872778 3031872770 Basics of Crystal Structure, Band Structure and Lattice Vibrations in Solids -- Energy Eigen States of the Excitons -- Absorption of Light by Excitons -- Recombination of Excitons -- Magnetic Aspects of Excitons -- Many-body Effects in Excitons.This book explores fundamental and experimental aspects of excitons in semiconductors. It begins with an introduction to crystal lattice, band structure of solids, effective mass theory, and holes. It then explores the binding energy of various excitons and their complexes (such as trions and biexcitons) in different dimensions within the framework of effective mass approximation, discusses the absorption and emission of photons during their creation and recombination processes providing experimental examples in photo-absorption and photoluminescence (PL) spectroscopy. Theoretical foundations for calculating the dielectric function associated with excitons along with the concept of 'exciton-polaritons' are introduced. The book also examines the interaction between excitons and phonons, which is illustrated with experimental findings. Further, it discusses the effects of magnetic field on the energy eigenstates of excitons, and talks about polarization-resolved spectroscopy under magnetic field for identifying excitons and obtaining deeper insight of the excitonic structure as well as the semiconductor band structure. Lastly, it delves into the manybody effects i.e. Bose-Einstein condensation of excitons and excitonic Mott transition, presenting recent experimental findings and potential applications. Throughout, emphasis is placed on elucidating fundamental concepts while keeping readers abreast of the latest developments in the field. With a focus on experimental methods and data interpretation, the book serves as an invaluable resource for both graduate students and research scholars.Springer Series in Solid-State Sciences,2197-4179 ;204SemiconductorsLow temperaturesBose-Einstein condensationMaterialsAnalysisOptoelectronic devicesSemiconductorsLow Temperature PhysicsBose-Einstein CondensateMaterials Characterization TechniqueOptoelectronic DevicesSemiconductors.Low temperatures.Bose-Einstein condensation.MaterialsAnalysis.Optoelectronic devices.Semiconductors.Low Temperature Physics.Bose-Einstein Condensate.Materials Characterization Technique.Optoelectronic Devices.537.622Dhar Subhabrataauthttp://id.loc.gov/vocabulary/relators/aut1816921MiAaPQMiAaPQMiAaPQBOOK9910996495403321Excitons in Semiconductors4374132UNINA