AbstractPhoto-excitation and size-dependent Raman scattering studies on the silicon (Si) nanostructures (NSs) prepared by laser-induced etching are presented here. Asymmetric and red-shifted Raman line-shapes are observed due to photo-excited Fano interaction in the quantum confined nanoparticles. The Fano interaction is observed between photo-excited electronic transitions and discrete phonons in Si NSs. Photo-excited Fano studies on different Si NSs show that the Fano interaction is high for smaller size of Si NSs. Higher Fano interaction for smaller Si NSs is attributed to the enhanced interference between photo-excited electronic Raman scattering and phonon Raman scattering.</p
Silicon nanostructures embedded in an amorphous matrix have been synthesized by Pulsed Laser Deposit...
Raman-scattering spectra of silicon nanowires (SiNW's) with different diameters were obtained a...
ENGINEERING PHONON, PHOTON, ELECTRON AND PLASMON INTERACTIONS IN SILICON - METAL NANOCAVITIIES FOR S...
Size-dependent asymmetric low-frequency Raman line shapes have been observed from silicon (Si) nanos...
An anomalous nature of Raman spectral asymmetry has been reported here from silicon nanowires (SiNWs...
Abstract. Raman scattering and photoluminescence (PL) measurements on (100) oriented n-type crystall...
An innovative method for Si nanostructures (NS) fabrication is proposed, through nanosecond laser ir...
International audienceIn this paper, we produce nanoholes on a silicon surface by laser ablation. Th...
Specific optical properties of high-refractive-index nanostructures provide interesting experimental...
A variation of Raman feature on excitation wavelength in silicon nanowires was observed. Based on th...
The size effect of nanoscale silicon in both amorphous and porous silicon was investigated with micr...
A series of porous silicon surfaces were obstained after different exposition times of electrochemis...
The size effect of nanoscale silicon in both amorphous and porous silicon was investigated with micr...
The optical phonons in semiconductor nanostructures play an indispensable role in fundamental phenom...
Raman scattering of nanocrystalline silicon embedded in SiO2 matrix is systematically investigated. ...
Silicon nanostructures embedded in an amorphous matrix have been synthesized by Pulsed Laser Deposit...
Raman-scattering spectra of silicon nanowires (SiNW's) with different diameters were obtained a...
ENGINEERING PHONON, PHOTON, ELECTRON AND PLASMON INTERACTIONS IN SILICON - METAL NANOCAVITIIES FOR S...
Size-dependent asymmetric low-frequency Raman line shapes have been observed from silicon (Si) nanos...
An anomalous nature of Raman spectral asymmetry has been reported here from silicon nanowires (SiNWs...
Abstract. Raman scattering and photoluminescence (PL) measurements on (100) oriented n-type crystall...
An innovative method for Si nanostructures (NS) fabrication is proposed, through nanosecond laser ir...
International audienceIn this paper, we produce nanoholes on a silicon surface by laser ablation. Th...
Specific optical properties of high-refractive-index nanostructures provide interesting experimental...
A variation of Raman feature on excitation wavelength in silicon nanowires was observed. Based on th...
The size effect of nanoscale silicon in both amorphous and porous silicon was investigated with micr...
A series of porous silicon surfaces were obstained after different exposition times of electrochemis...
The size effect of nanoscale silicon in both amorphous and porous silicon was investigated with micr...
The optical phonons in semiconductor nanostructures play an indispensable role in fundamental phenom...
Raman scattering of nanocrystalline silicon embedded in SiO2 matrix is systematically investigated. ...
Silicon nanostructures embedded in an amorphous matrix have been synthesized by Pulsed Laser Deposit...
Raman-scattering spectra of silicon nanowires (SiNW's) with different diameters were obtained a...
ENGINEERING PHONON, PHOTON, ELECTRON AND PLASMON INTERACTIONS IN SILICON - METAL NANOCAVITIIES FOR S...