Response theory of interfaces, superlattices and composite materials
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Summary
How a simple general theory developed is described, the story of the formation of a useful mathematical language for the study of surfaces, interfaces, superlattices and composite materials is told.
- Type
- article
- Published
- 1994-01-01
- Cited by
- 10
- References
- 46
- Access
- Open access
- OpenAlex
- https://openalex.org/W2009988500
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:94915260
Keywords
Superlattice, Simple (philosophy), Surface (topology), Field (mathematics), Theoretical physics
References
- Resonant Phonons in Adsorbed Slabs
- Dynamics of thin epitaxial layers on (001) surfaces of bcc metals: A Green-function approach.
- Electron energy loss spectroscopy: the vibration spectroscopy of surfaces
- Eigenvectors of composite systems. II. Phonon eigenvectors in some layered materials
- Theory of surface phonons in superlattices
- Studies of interface phonons
- Theory of Incomplete Crystals and Crystalline Interfaces
- Interface phonons in GaAs/AlAs superlattices studied by micro-raman spectroscopy
- Magnons et surstructures magnétiques d'interface
- Interface response theory of discrete superlattices
- Lattice dynamics of systems with two interfaces
- Organ-pipe modes of sodium epitaxial multilayers on Cu(001) observed by inelastic helium-atom scattering.
- Surface phonons in superlattices
- Helium atom scattering spectroscopy of surface phonons: genesis and achievements
- Interface response theory of continuous composite materials
- Green functions, surfaces, and impurities
- A green's function theory of surface states
- Electron and Phonon Bound States and Scattering Resonances for Extended Defects in Crystals
- Interface response theory of composite systems
- Low magnetic field technology for space exploration
Cited by
- Theoretical study of conductance in stretched monatomic nanowires
- Boundary-induced energy localization in a nonlinear quantum lattice
- Two-vibron bound states lifetime in a one-dimensional molecular lattice coupled to acoustic phonons
- Theory of confined plasmonic waves in coaxial cylindrical cables fabricated of metamaterials
- Localized two-vibron bound-state dynamics in a molecular lattice with a defect: Resonances between bound, localized, and free states
- Plasmons and magnetoplasmons in semiconductor heterostructures
- Excitons and polaritons in quasi-molecular eigenbasis of the excitation hopping system interacting with a photon field.
- Amide-I lifetime-limited vibrational energy flow in a one-dimensional lattice of hydrogen-bonded peptide units.
- Phonon anharmonicity-induced decoherence slowing down in exciton–phonon systems
- Green-function theory of confined plasmons in coaxial cylindrical geometries: Finite magnetic field
- Green-function theory of confined plasmons in coaxial cylindrical geometries: Finite magnetic field
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