In present study, the effect of different defect layer refractive indices and thicknesses on group velocity has been studied in one-dimensional photonic crystal. It is found that the increase of refractive index, number of defects and defect layer thickness will induce the decrease of group velocity. Taking advantage of these results, a novel technique has been introduced to tune and control the slowing light in photonic crysta
Slow light with a markedly low group velocity is a promising solution for optical buffering and adva...
We review the different types of dispersion engineered photonic crystal waveguides that have been de...
Photonic crystal line defect waveguides show high group velocity dispersion and slow photon effect n...
Small group velocity of light in periodical structures can be utilized to dramatically decrease the ...
Slow light with a remarkably low group velocity is a promising solution for buffering and time-domai...
We describe a tunable slow light device based on a photonic-crystal with a mechanically adjustable c...
Slow light plays an outstanding role in a wide variety of optical applications, from quantum informa...
We report ensemble-average transport characteristics obtained for a series of photonic-crystal waveg...
The guide mode whose frequency locates in the band edge in photonic crystal single line defect waveg...
Photonic crystal slab line defect waveguides with slightly small innermost holes are theoretically e...
The physical principles behind the phenomenon of slow light in photonic crystal waveguides, as well ...
Flat band slow light in symmetric line defect photonic crystal waveguides formed by adding dielectri...
We review the different types of dispersion engineered photonic crystal waveguides that have been de...
We present a systematic procedure for designing “flat bands” of photonic crystal waveguides for slo...
We present theory andmeasurements of disorder-induced losses for low loss 1.5mm long slow light phot...
Slow light with a markedly low group velocity is a promising solution for optical buffering and adva...
We review the different types of dispersion engineered photonic crystal waveguides that have been de...
Photonic crystal line defect waveguides show high group velocity dispersion and slow photon effect n...
Small group velocity of light in periodical structures can be utilized to dramatically decrease the ...
Slow light with a remarkably low group velocity is a promising solution for buffering and time-domai...
We describe a tunable slow light device based on a photonic-crystal with a mechanically adjustable c...
Slow light plays an outstanding role in a wide variety of optical applications, from quantum informa...
We report ensemble-average transport characteristics obtained for a series of photonic-crystal waveg...
The guide mode whose frequency locates in the band edge in photonic crystal single line defect waveg...
Photonic crystal slab line defect waveguides with slightly small innermost holes are theoretically e...
The physical principles behind the phenomenon of slow light in photonic crystal waveguides, as well ...
Flat band slow light in symmetric line defect photonic crystal waveguides formed by adding dielectri...
We review the different types of dispersion engineered photonic crystal waveguides that have been de...
We present a systematic procedure for designing “flat bands” of photonic crystal waveguides for slo...
We present theory andmeasurements of disorder-induced losses for low loss 1.5mm long slow light phot...
Slow light with a markedly low group velocity is a promising solution for optical buffering and adva...
We review the different types of dispersion engineered photonic crystal waveguides that have been de...
Photonic crystal line defect waveguides show high group velocity dispersion and slow photon effect n...