Raman-scattering spectra of silicon nanowires (SiNW's) with different diameters were obtained at room temperature, The Raman peaks of SiNW's were found to shift and to broaden with decreasing diameter of the SiNW's, In addition to the fundamental phonon modes, overtone and combination modes were also observed and identified according to the selection rules of overtone and combination bands. A phonon confinement model was used to explain the experimental results of observed phonon modes. The results show that the confinement effect becomes more obvious when the SiNW diameter is less than 22 nm. The present results should be of benefit to the applications of SiNW's.Physics, Condensed MatterSCI(E)140ARTICLE2416827-168326
We have fabricated Si-on-insulator (SOI) layers with a thickness h1 of a few nanometers and examine...
Si Nanowires (NWs) were studied by Raman microspectroscopy. The Raman spectrum of the NWs reveals im...
An anomalous nature of Raman spectral asymmetry has been reported here from silicon nanowires (SiNWs...
Raman spectra of silicon nanowires (Si NW's) have been analyzed, and the observed Raman peaks w...
We measure the effects of phonon confinement on the Raman spectra of silicon nanowires. We show how ...
A variation of Raman feature on excitation wavelength in silicon nanowires was observed. Based on th...
International audienceThe Raman spectrum of Si nanowires (NWs) is a matter of controversy. Usually, ...
Silicon nanowires with narrowly distributed diameters of 20-30 nm have been fabricated by chemical v...
Silicon nanowires were grown on Au-coated Si substrates by vapor transport and the first and second-...
In the present paper we develop for the first time a general theory calculating the Raman ...
The Raman spectra of two one-dimensional silicon nanowire samples with different excitation waveleng...
Strong computational capabilities are required for precise prediction of Raman spectra from low-dime...
The optical phonons in semiconductor nanostructures play an indispensable role in fundamental phenom...
International audienceSilicon and germanium nanowires are synthesized by the VLS (VaporLiquid Solid)...
A complete Raman study of GaP nanowires is presented. By comparison with the Raman spectra of GaP b...
We have fabricated Si-on-insulator (SOI) layers with a thickness h1 of a few nanometers and examine...
Si Nanowires (NWs) were studied by Raman microspectroscopy. The Raman spectrum of the NWs reveals im...
An anomalous nature of Raman spectral asymmetry has been reported here from silicon nanowires (SiNWs...
Raman spectra of silicon nanowires (Si NW's) have been analyzed, and the observed Raman peaks w...
We measure the effects of phonon confinement on the Raman spectra of silicon nanowires. We show how ...
A variation of Raman feature on excitation wavelength in silicon nanowires was observed. Based on th...
International audienceThe Raman spectrum of Si nanowires (NWs) is a matter of controversy. Usually, ...
Silicon nanowires with narrowly distributed diameters of 20-30 nm have been fabricated by chemical v...
Silicon nanowires were grown on Au-coated Si substrates by vapor transport and the first and second-...
In the present paper we develop for the first time a general theory calculating the Raman ...
The Raman spectra of two one-dimensional silicon nanowire samples with different excitation waveleng...
Strong computational capabilities are required for precise prediction of Raman spectra from low-dime...
The optical phonons in semiconductor nanostructures play an indispensable role in fundamental phenom...
International audienceSilicon and germanium nanowires are synthesized by the VLS (VaporLiquid Solid)...
A complete Raman study of GaP nanowires is presented. By comparison with the Raman spectra of GaP b...
We have fabricated Si-on-insulator (SOI) layers with a thickness h1 of a few nanometers and examine...
Si Nanowires (NWs) were studied by Raman microspectroscopy. The Raman spectrum of the NWs reveals im...
An anomalous nature of Raman spectral asymmetry has been reported here from silicon nanowires (SiNWs...