Crystalline silicon optical fibers are emerging as a promising platform for a wide range of optoelectronic applications. Here we report a crystallographic study of the material properties within silicon fibers that have been post-processed via a tapering procedure to obtain small, few micron-sized core diameters. Our results reveal that the tapering process can improve the polysilicon quality of the core through the formation of large, centimeter long crystal grains, thus significantly reducing the optical losses.QC 20171218</p
Polycrystalline silicon core fibers (SCFs) fabricated via the molten core drawing (MCD) method are e...
We investigate the surface roughness of polycrystalline silicon core optical fibers fabricated using...
Semiconductor optical fibre technologies have grown rapidly in the last decade and there are now a r...
Crystalline silicon optical fibers are emerging as a promising platform for a wide range of optoelec...
Crystalline silicon optical fibers are emerging as a promising platform for a wide range of optoelec...
Silicon photonics is an increasingly active and exciting research topic that owes much to the excell...
The tapering of silicon optical fibers is demonstrated using a fusion splicer. The silicon fibers ar...
We have fabricated small core polysilicon waveguides by tapering bulk, as-drawn silicon optical fibe...
We propose and demonstrate a novel approach to obtaining small core polysilicon waveguides from the ...
Polycrystalline silicon core optical fibers have been fabricated by modified thermal annealing of am...
We review our work to grow single-crystal silicon materials within the cores of optical fibers. Part...
Data set to accompany paper, Material properties of tapered crystalline silicon core fibers</span
International audienceHybrid optical fibers, i.e. optical fibers that combine, in the same structure...
Polycrystalline silicon core fibers (SCFs) fabricated via the molten core drawing (MCD) method are e...
Polycrystalline silicon core fibers (SCFs) fabricated via the molten core drawing (MCD) method are e...
Polycrystalline silicon core fibers (SCFs) fabricated via the molten core drawing (MCD) method are e...
We investigate the surface roughness of polycrystalline silicon core optical fibers fabricated using...
Semiconductor optical fibre technologies have grown rapidly in the last decade and there are now a r...
Crystalline silicon optical fibers are emerging as a promising platform for a wide range of optoelec...
Crystalline silicon optical fibers are emerging as a promising platform for a wide range of optoelec...
Silicon photonics is an increasingly active and exciting research topic that owes much to the excell...
The tapering of silicon optical fibers is demonstrated using a fusion splicer. The silicon fibers ar...
We have fabricated small core polysilicon waveguides by tapering bulk, as-drawn silicon optical fibe...
We propose and demonstrate a novel approach to obtaining small core polysilicon waveguides from the ...
Polycrystalline silicon core optical fibers have been fabricated by modified thermal annealing of am...
We review our work to grow single-crystal silicon materials within the cores of optical fibers. Part...
Data set to accompany paper, Material properties of tapered crystalline silicon core fibers</span
International audienceHybrid optical fibers, i.e. optical fibers that combine, in the same structure...
Polycrystalline silicon core fibers (SCFs) fabricated via the molten core drawing (MCD) method are e...
Polycrystalline silicon core fibers (SCFs) fabricated via the molten core drawing (MCD) method are e...
Polycrystalline silicon core fibers (SCFs) fabricated via the molten core drawing (MCD) method are e...
We investigate the surface roughness of polycrystalline silicon core optical fibers fabricated using...
Semiconductor optical fibre technologies have grown rapidly in the last decade and there are now a r...