We demonstrate that slow light with large group-index, wideband, and low dispersion can be realized in a silicon-on-insulator W1-type photonic crystal waveguide by simply shifting the first two rows of air-holes adjacent to the waveguide to specific directions. Keeping the group index at 46, 60, 86, 111, 151, and 233, respectively, while restricting its variation within a +/- 10% range, we accordingly obtain a slow light bandwidth of 9.0 nm, 6.7 nm, 4.6 nm, 3.3 nm, 2.4 nm, and 1.7 nm, respectively. The normalized delay-bandwidth product keeps around 0.25 for all cases. Moreover, we obtain ultraflat slow light with bandwidths over 3.0 nm, 2.4 nm, 1.6 nm, 1.3 nm, 0.93 nm, and 0.6 nm, respectively, where the group index variation is in a range...
We review the different types of dispersion engineered photonic crystal waveguides that have been de...
Slow light with a markedly low group velocity is a promising solution for optical buffering and adva...
Flat band slow light in symmetric line defect photonic crystal waveguides formed by adding dielectri...
We demonstrate that slow light with large group-index, wideband, and low dispersion can be realized ...
A dispersion tailoring scheme for obtaining slow light in a silicon-on-insulator W1-type photonic cr...
We present a systematic procedure for designing “flat bands” of photonic crystal waveguides for slo...
We present a procedure to generate wideband and low dispersion slow light in slotted photonic crysta...
We use a single-defect photonic crystal waveguide with ring-shaped holes to achieve a small group ve...
In this study, we propose a special type of slow light photonic crystal (PC) waveguide structure to ...
We propose a silicon-on-insulator (SOI) photonic crystal waveguide within a hexagonal lattice of ell...
We review the different types of dispersion engineered photonic crystal waveguides that have been de...
We review the different types of dispersion engineered photonic crystal waveguides that have been de...
We have designed slow light photonic crystal waveguides operating in a low loss and constant dispers...
We propose a silicon-on-insulator (SOI) photonic crystal waveguide within a hexagonal lattice of ell...
We review the different types of dispersion engineered photonic crystal waveguides that have been de...
We review the different types of dispersion engineered photonic crystal waveguides that have been de...
Slow light with a markedly low group velocity is a promising solution for optical buffering and adva...
Flat band slow light in symmetric line defect photonic crystal waveguides formed by adding dielectri...
We demonstrate that slow light with large group-index, wideband, and low dispersion can be realized ...
A dispersion tailoring scheme for obtaining slow light in a silicon-on-insulator W1-type photonic cr...
We present a systematic procedure for designing “flat bands” of photonic crystal waveguides for slo...
We present a procedure to generate wideband and low dispersion slow light in slotted photonic crysta...
We use a single-defect photonic crystal waveguide with ring-shaped holes to achieve a small group ve...
In this study, we propose a special type of slow light photonic crystal (PC) waveguide structure to ...
We propose a silicon-on-insulator (SOI) photonic crystal waveguide within a hexagonal lattice of ell...
We review the different types of dispersion engineered photonic crystal waveguides that have been de...
We review the different types of dispersion engineered photonic crystal waveguides that have been de...
We have designed slow light photonic crystal waveguides operating in a low loss and constant dispers...
We propose a silicon-on-insulator (SOI) photonic crystal waveguide within a hexagonal lattice of ell...
We review the different types of dispersion engineered photonic crystal waveguides that have been de...
We review the different types of dispersion engineered photonic crystal waveguides that have been de...
Slow light with a markedly low group velocity is a promising solution for optical buffering and adva...
Flat band slow light in symmetric line defect photonic crystal waveguides formed by adding dielectri...