Keywords: 63.22. + متر; Electric field; Soliton; Morse lattice63.50.+x; 63.22.+m; 62.30.+d
مقالات ISI 63.22. + متر (ترجمه نشده)
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Influence of gas-mixture composition on yield, purity and morphology of carbon nanotubes grown by catalytic isobutane-decomposition
Keywords: 63.22. + متر; 63.22.+m; 81.07.De; 81.16.HcCarbon nanotubes; Isobutane; Raman spectroscopy; Catalytic processes
Raman spectrum of single-walled boron nitride nanotube
Keywords: 63.22. + متر; Nanotube; Boron nitride; Spectroscopy; Simulation61.46.Fg; 63.22.+m; 61.43.Bn
Vibrational properties of single-wall BC3 nanotubes
Keywords: 63.22. + متر; 63.22.+m; 61.46.−w; 78.30.−jA. Nanostructures; D. Lattice dynamics; D. Phonons
Boundary effects on quantum qq-breathers in a Bose–Hubbard chain
Keywords: 63.22. + متر; 63.20.Pw; 63.20.Ry; 63.22.+m; 03.65.Geqq-breathers; Bose–Hubbard model; Normal modes
Acoustic phonons transport in a quantum waveguide embedded double defects
Keywords: 63.22. + متر; Double defects; Acoustic phonons transport; Quantum waveguide; Transmission coefficient; Thermal conductance; 63.22.+m; 73.23.Ad; 44.10.+i;
Effects of pressure transmitting media on Raman features of single-walled carbon nanotubes
Keywords: 63.22. + متر; 81.07.De; 68.35.Ja; 63.22.+m; 78.30.Na; 62.50.+pA. Nanostructures; B. Surfaces and interfaces; E. Inelastic light scattering; E. High pressure
Size effect of thermal conductivity of Si nanocrystals
Keywords: 63.22. + متر; 61.46.Hk; 61.82.Fk; 63.22.+m; 65.80.+nA. Semiconductors; A. Nanostructures; D. Heat conduction; D. Phonons
Radial breathing-like mode of wide carbon nanoribbon
Keywords: 63.22. + متر; 73.22.-f; 63.22.+m; 78.30.-jCarbon nanoribbon; Radial breathing-like mode
Are deformed modes still Raman active for single-wall carbon nanotubes?
Keywords: 63.22. + متر; 61.46.+w; 62.50.+p; 63.22.+m; Raman active; Symmetry; Correlation; Single-wall carbon nanotubes (SWCNTs); Hydrostatic pressure;
Elastic properties of finite three-dimensional solid phononic-crystal slabs
Keywords: 63.22. + متر; 43.20.+g; 63.22.+m; 68.35.Ja; 68.35.Iv; Phononic crystals; Finite slabs; Surface-localized waves; Multiple scattering;
Raman scattering of single tetrapod-like ZnO nanostructure synthesized by catalyst-free rapid evaporation
Keywords: 63.22. + متر; 68.70.+w; 78.67.-n; 81.07.-b; 63.22.+m; A. ZnO; A. Tetrapod-like nanostructure; D. Spatially-resolved mapping; E. Polarized Raman scattering;
Effect of diffusion layers and defect layer on acoustic phonons transport through the structure consisting of different films
Keywords: 63.22. + متر; 63.22.+m; 73.23.Ad; 44.10.+iDiffusion layers; Defect layer; Acoustic phonon; Transmission coefficient
Thermal conductance in a quantum waveguide modulated with quantum dots
Keywords: 63.22. + متر; 63.22.+m; 73.23.Ad; 44.10.+i; Phonons in low-dimensional structures; Ballistic transport; Thermal conduction;
Fabrication of nanopatterned germanium surface by laser-induced etching: AFM, Raman and PL studies
Keywords: 63.22. + متر; 81.07.Bc; 63.22.+m; 78.55.−mGe nanoparticles; Raman spectroscopy; Photoluminescence
The ballistic resonance of transversal mechanical waves in random-dimer systems
Keywords: 63.22. + متر; 63.22.+m; 63.50.+x; 63.70.+hAnderson localization; Short range correlated disorder; Dimer resonances; Mechanical filters; Ballistic transport
Theoretical study of phonon spectra in ferromagnetic nanoparticles
Keywords: 63.22. + متر; 63.22.+m; 63.10.+a; 63.20.Ls; 63.20.KrMagnetic nanoparticles; Green's function; Anharmonic spin–phonon interaction; Phonon energy; Damping
Experiments on C nanotubes synthesis by Fe-assisted ethane decomposition
Keywords: 63.22. + متر; 63.22.+m; 68.37.Hk; 68.37.Lp; 78.67.Ch; 81.16.HcCarbon nanotubes; MWNT; Raman spectroscopy; Catalytic processes; Chemical vapor deposition
Large-scale production of high-quality multi-walled carbon nanotubes: Role of precursor gas and of Fe-catalyst support
Keywords: 63.22. + متر; 63.22.+m; 68.37.Hk; 68.37.Lp; 81.07.De; 81.16.HcCarbon nanotubes; MWCNT; Isobutane; Fe catalysts; Raman spectroscopy; Chemical vapour deposition
Phonon spectra of a Fibonacci chain
Keywords: 63.22. + متر; 63.20.âe; 61.44.Br; 63.22.+m; 68.65.Cd; Phonon; Quasicrystals; Superlattices;
Heat transport in a four-perpendicularity-bend quantum waveguide
Keywords: 63.22. + متر; 63.22.+m; 73.23.Ad; 44.10.+i; Heat transport; Quantum waveguide; Transmission coefficient; Thermal conductance;
Time reversal mirror and perfect inverse filter in a microscopic model for sound propagation
Keywords: 63.22. + متر; 05.45.Gg; 43.20.+g; 43.60.+d; 63.22.+m; Control of chaos; Applications of chaos; General linear acoustics;
Acoustic phonon transport and thermal conductance in a multiple channels nanostructure
Keywords: 63.22. + متر; 63.22.+m; 44.10.+i; 73.23.AdAcoustic phonon transport; Thermal conductance; Quantum wire
Optical studies of carbon nanotubes and nanographites
Keywords: 63.22. + متر; 78.30.Na; 78.20.Bh; 78.66.Tr; 63.22.+m; 36.20.Kd; 36.20.NgCarbon nanotubes; Nanographites; Carbon nanoribbons; Raman scattering; Photoluminescence; Optical properties
Phonon amplification in a graphite sheet under a microwave field
Keywords: 63.22. + متر; 63.20.Kr; 63.22.+m; 78.67.−n; 05.40.−aAtomic-displacement fluctuation; Microwave field; Electron–phonon coupling; Graphite sheet
Strongly intrinsic anharmonicity in the low-frequency Raman mode in nanocrystalline anatase TiO2
Keywords: 63.22. + متر; 63.20.Kr; 63.22.+m; 78.30.HvTitanium dioxide; Raman spectroscopy; Nanocrystalline anatase; Anharmonicity
Optimisation of gas mixture composition for the preparation of high quality MWCNT by catalytically assisted CVD
Keywords: 63.22. + متر; 63.22.+m; 68.37.Hk; 68.37.Lp; 81.07.De; 81.16.HcCarbon nanotubes; MWNT; Raman spectroscopy; Catalytic processes; Chemical vapour deposition
Thermal conductance in quantum wire with two obstacles
Keywords: 63.22. + متر; 63.22.+m; 44.10.i; 73.23.AdPhonon transport; Thermal conductance; Nanowire
Polar optical phonons in a semiconductor quantum-well: The complete matching problem
Keywords: 63.22. + متر; 63.22.+m; 63.20.Dj; 63.20.KrNanostructures; Quantum-wells; Polar optical phonons
Raman spectra of intrinsic and doped hydrogenated nanocrystalline silicon films
Keywords: 63.22. + متر; 63.22.+m; 73.61.CwSi nanocrystal; Raman scattering; Phonon confinement effect; Strain; Carrier effect
Effect of capping ligands on the synthesis and on the physical properties of the nanoparticles of LiTaO3
Keywords: 63.22. + متر; 81.07.−b; 61.46.Df; 63.22.+m; 65.80.+n; 68.37.LpA1. Differential scanning calorimetry; A1. Scanning electron microscope; A1. Transmission electron microscope; A1. X-ray diffraction; B1. Nanomaterials; B2. Ferroelectric materials
Symmetry-adapted tight-binding calculations of the totally symmetric A1 phonons of single-walled carbon nanotubes and their resonant Raman intensity
Keywords: 63.22. + متر; 61.46.Fg; 63.22.+m; 78.30.NaNanotube; Phonons; Raman scattering
One- and two-phonon Raman scattering from hydrogenated nanocrystalline silicon films
Keywords: 63.22. + متر; 61.46.Hk; 63.22.+m; 73.63.BdHydrogenated nanocrystalline silicon film; Raman scattering; Carrier effect; Disorder
The size and strain effects on the Raman spectra of Ce1−xNdxO2−δ (0≤x≤0.25) nanopowders
Keywords: 63.22. + متر; 61.82.Rx; 63.22.+m; 78.30.−jA. CeO2 doped nanopowders; B. SPRT synthesis; C. Raman scattering; D. Confined phonons
Raman properties of silicon nanoparticles
Keywords: 63.22. + متر; 63.22.+m; 78.40.Fy; 63.20.--eRaman; Silicon; Nanoparticles; Phonon confinement
Self-consistent theory of intrinsic localized modes: Application to monatomic chain
Keywords: 63.22. + متر; 63.20.Pw; 63.10.+a; 63.22.+m; Lattice vibrations; Anharmonicity; Intrinsic localized mode;
Sensitivity to initial conditions of the wave-packet dynamics in diluted Anderson chains
Keywords: 63.22. + متر; 63.50.+x; 63.22.+m; 62.30.+dAnderson localization; Electronic transport; Diluted disorder
Diffusive, super-diffusive and ballistic transport in the long-range correlated 1D Anderson model
Keywords: 63.22. + متر; 63.50.+x; 63.22.+m; 62.30.+dD. Anderson model; D. Long-range correlated disorder; D. Delocalization; D. Electronic transport
Micro-Raman spectroscopy of disordered and ordered sulfur phases on a passivated GaAs surface
Keywords: 63.22. + متر; 78.30.âj; 81.65.âb; 63.22.+m; 71.55.Jv; Gallium arsenide; Sulfur passivation; Raman spectroscopy; Surface morphology; (NH4)2Sx; S2Cl2;
Localized mixed acoustic modes in non-cubic-axial superlattice with a cap layer
Keywords: 63.22. + متر; 63.22.+m; 63.20.Pw; 68.35.JaPhonons in low-dimensional structures; Localized modes; Solid-solid interface
Phonon heat transport through periodically stubbed waveguides
Keywords: 63.22. + متر; 63.22.+m; 44.10.+i; 73.23.Ad;
Interface and propagating optical phonon mixing modes in a wurtzite GaN-based quantum dot
Keywords: 63.22. + متر; 81.05.Ea; 63.22.+m; 78.67.HcA. Wurtzite cylindrical quantum dots; D. Optical phonon modes; D. Electron–phonon interactions
Ab initio theoretical study of SiC microclusters
Keywords: 63.22. + متر; 61.46.+w; 63.22.+m; 81.07.Ta; A1. Nanostructures; B1. Nanomaterial; B2. Semiconducting silicon compounds; Binary clusters; Structures; Binding energy; Vibrational frequencies;
Acoustic phonons in semiconductor nanocrystals
Keywords: 63.22. + متر; 63.22.+m; 61.46.+w; 62.30.+d; 78.30.−jNanocrystals; Acoustic vibrations; Phonons; Raman spectra
Acoustic phonon transport through a double-bend quantum waveguide
Keywords: 63.22. + متر; 63.22.+m; 73.23.Ad; 44.10.+i;
The influence of boundary conditions on thermal conductance in semiconductor quantum wire with structural defect
Keywords: 63.22. + متر; 63.22.+m; 44.10.+i; 73.23.Ad
Acoustic wave amplification in one-dimensional quantum well wires
Keywords: 63.22. + متر; 63.22.+m; 73.63.Nm; 72.10.Di; Quantum well wire; Amplification; Acoustic phonon; Electron drift velocity;
Confined optical phonons in Ge/Si/Ge semiconductor quantum-wells: An improved continuum approach
Keywords: 63.22. + متر; 63.22.+m; 63.20.Dj; 63.20.Kr; Nanostructure; Quantum-well; Phonons;
Multi-wavelength Raman investigation of sputtered a-C film nanostructure
Keywords: 63.22. + متر; 81.15.Cd; 78.30.Ly; 63.22.+m; Carbon; Amorphous; Sputtering; Nanostructure; Raman scattering spectroscopy; Annealing;
Optical phonon modes confinement in quasiperiodic semiconductor superlattice
Keywords: 63.22. + متر; 63.20.Pw; 63.22.+m; 68.65.Cd; 71.55.Eq; Fractal spectra; Localization; Quasiperiodic Fibonacci structure; Optical phonons;