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Novel Research in Low-Dimensional Systems

Novel Research in Low-Dimensional Systems

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The application of novel experimental tools in many scientific fields has created an urgent need for an improved understanding of many new physical phenomena that emerge under such conditions. In particular, phenomena that occur in low-dimensional systems have drawn the interest of many experimental and theoretical groups globally. The aim of this reprint is to provide an overview of the current research in low-dimensional systems by attracting contributions from a number of specialists in the field. This way, we attempt to provide important insights on the large variety of scientifically fascinating and technologically important phenomena that are currently being investigated. The covered topics include original research articles on the fundamental principles and experimental aspects that apply to various low-dimensional systems, such as quantum dots, graphene systems, ultrathin films, superconducting films, novel nanoscale devices, etc. This reprint includes research papers from both theoretical and experimental groups. Many phenomena are studied from a multi-disciplinary perspective in such a way as to explore key important developments in the field.

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Keywords

  • adsorption on the surface
  • atomic limit
  • Au9
  • BKT transition
  • boron nitride
  • capacitance
  • charge order
  • circular plate
  • confinement
  • Cr(OH)3
  • Cr2O3 layer
  • critical current
  • CrOx
  • deep-subwavelength gap
  • dielectric thin film
  • dispersionless
  • electro-optic switch
  • energy
  • evaporated film
  • extended Hubbard model
  • fermionic lattice gas
  • film-forming ability
  • finite element analysis (FEA)
  • flux
  • Geography
  • gold clusters
  • granular superconductivity
  • Graphene
  • graphene plasmons
  • h-BN
  • heat transfer
  • HgSe QD
  • hole localization
  • long-wave infrared
  • longer-range interactions
  • mean-field theory
  • Mechanical properties
  • Morphology
  • n/a
  • nanocapacitor
  • nanocomposite film
  • nanostripes
  • nbn
  • non-volatile memories
  • numerical study
  • On-Chip Integration
  • penetration depth
  • phase diagram
  • phase slips
  • photodeposition
  • QD-Flash
  • quantum dots memories
  • quaternary alloy
  • Reference, information & interdisciplinary subjects
  • Research & information: general
  • RF magnetron sputtering
  • scanning thermal microscopy (SThM)
  • self-assembled quantum dots
  • Stability
  • stationary time
  • strain
  • superconducting
  • thermal contact
  • thermodynamic properties
  • TiO2 film
  • triangular lattice
  • triphenylphosphine
  • ultrathin films
  • universal memories
  • vortex

Links

DOI: 10.3390/books978-3-0365-7192-8

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