Optically-active silica nanowires are produced by metal-induced growth on silicon substrates using ion-implantation, with two different strategies employed for their fabrication. The first is based on Er implantation of nanowires produced by a thin-film Pd catalyst layer, and the second employing implanted Er as both the catalyst and dopant. The luminescence properties of the resulting Er-doped silica nanowires are reported and compared with similarly implanted fused silica samples. Comparison shows that the luminescence lifetime of Er is increased by incorporation within the nanowires due to a reduction in the density of available optical states in these structures. Additional details of the synthesis, structure and properties of these fun...
In this work, the optical properties of Er and Ag co-implanted silica slabs were investigated in ord...
Opto-electronic semiconductor technology continues to grow at an accelerated pace, as the industry s...
Nanophotonic structures combining electronic confinement in nanocrystals with photon confinement in ...
Infrared optical emission from erbium-doped silica nanowires is shown to have property characteristi...
Utilising active oxidation processes at higher temperatures and low O 2 partial pressures, a dense l...
In this research, selective and bottom-up manufacturing of silica nanowires on silicon (Si) and its ...
Gold-catalyzed silicananowires were grown using vapor from the active oxidation of the silicon subst...
Optically active SiOx nanowires were grown on silicon by ion-implanting it with metallic impurities ...
We report on an oxide-assisted growth technique for silica nanowires which allows tuning the growth ...
The sensitization mechanism of Er3+ ions by sub-nanometric Au_N aggregates formed in silica by seque...
The incorporation of Si-nc in Er doped silica is known to strongly enhance the infrared luminescence...
We present the results of an optical investigation of a series of Er doped silicon nanocrystal (Si-N...
Silica thin films containing Si nanocrystals and Er3+ were prepared by ion implantation. Excess Si c...
The development of optoelectronic or even photonic devices based on silicon technology is still a gr...
We present the results of an optical investigation of a series of Er doped silicon nanocrystal (Si-N...
In this work, the optical properties of Er and Ag co-implanted silica slabs were investigated in ord...
Opto-electronic semiconductor technology continues to grow at an accelerated pace, as the industry s...
Nanophotonic structures combining electronic confinement in nanocrystals with photon confinement in ...
Infrared optical emission from erbium-doped silica nanowires is shown to have property characteristi...
Utilising active oxidation processes at higher temperatures and low O 2 partial pressures, a dense l...
In this research, selective and bottom-up manufacturing of silica nanowires on silicon (Si) and its ...
Gold-catalyzed silicananowires were grown using vapor from the active oxidation of the silicon subst...
Optically active SiOx nanowires were grown on silicon by ion-implanting it with metallic impurities ...
We report on an oxide-assisted growth technique for silica nanowires which allows tuning the growth ...
The sensitization mechanism of Er3+ ions by sub-nanometric Au_N aggregates formed in silica by seque...
The incorporation of Si-nc in Er doped silica is known to strongly enhance the infrared luminescence...
We present the results of an optical investigation of a series of Er doped silicon nanocrystal (Si-N...
Silica thin films containing Si nanocrystals and Er3+ were prepared by ion implantation. Excess Si c...
The development of optoelectronic or even photonic devices based on silicon technology is still a gr...
We present the results of an optical investigation of a series of Er doped silicon nanocrystal (Si-N...
In this work, the optical properties of Er and Ag co-implanted silica slabs were investigated in ord...
Opto-electronic semiconductor technology continues to grow at an accelerated pace, as the industry s...
Nanophotonic structures combining electronic confinement in nanocrystals with photon confinement in ...