Electronic quantum transport in mesoscopic semiconductor structures

This book treats three topics of electronic quantum transport in mesoscopic semiconductor structures: the conductance in strongly interacting and disordered two-dimensional systems and the metal insulator transition, electron transport through quantum dots and quantum rings in the Coulomb-blockade r...

Mô tả đầy đủ

Đã lưu trong:
Chi tiết về thư mục
Tác giả chính: Ihn, Thomas, 1965-...., physicien
Định dạng: Livre numérique
Ngôn ngữ:Anglais
Được phát hành: Berlin [etc.] : Springer [20..].
Cham : Springer Nature
Loạt:Springer tracts in modern physics 192
Những chủ đề:
Truy cập trực tuyến:Accès sur la plateforme de l'éditeur
Accès sur la plateforme Istex
Accès Université d'Orléans
Accès INSA CVL
Chú thích: Archives Springer e-books (Licence nationale)
Archives Springer e-books (Licence nationale)
Autres localisations: Voir dans le Sudoc
Edition sous un autre format:• Electronic quantum transport in mesoscopic semiconductor structures, Thomas Ihn, New York, Springer, 2004, 1 vol. (XI-270 p.), Springer tracts in modern physics, 0-387-40096-6
• Electronic Quantum Transport in Mesoscopic Semiconductor Structures, Texte imprimé, 9781441923097
• Electronic Quantum Transport in Mesoscopic Semiconductor Structures, Texte imprimé, 9781468493856
Mục lục:
  • to Electron Transport
  • Electrical conductance: Historical account from Ohm to the semiclassical Drude-Boltzmann theory
  • Toward the microscopic understanding of conductance on a quantum mechanical basis
  • Conductance in Strongly Interacting and Disordered Two-Dimensional Systems
  • The concept of metals and insulators
  • Scaling theory of localization
  • Electron-electron interactions within the Fermi-liquid concept
  • Beyond Fermi-liquid theory
  • Summary of disorder and interaction effects
  • Experiments on strongly interacting two-dimensional systems and the metal-insulator transition
  • Theoretical work related to the metal-insulator transition
  • Metallic behavior in p-SiGe quantum wells
  • Electron Transport through Quantum Dots and Quantum Rings
  • to electron transport through quantum dots
  • Energy spectra of quantum rings
  • Spin filling in quantum dots
  • Local Spectroscopy of Semiconductor Nanostructures
  • Instrumentation: Scanning force microscopes for cryogenic temperatures and magnetic fields
  • Local investigation of a two-dimensional electron gas with an SFM at cryogenic temperatures
  • Local investigation of edge channels
  • Scanning gate measurements on a quantum wire.