Using a 3D fully-vectorial coupled Bloch-mode method, we present a systematic study of the transport of slow-light pulses in single-mode photonic-crystal waveguides (PhCW) with a realistic disorder model. For the intermediate regime corresponding to waveguide lengths of the order of the mean-free path (3 dB attenuation), we show that the group-velocity has a strong impact on the pulse broadening and distortion, limiting the practical use of PhCW to group indices below ≈50. For smaller group velocities, the pulse experiences an additional delay and the group-velocity is no longer a meaningful quantity
We describe the generic effects of loss or gain on pulse propagation in photonic-crystal and plasmon...
We examine the effects of disorder on propagation loss as a function of group velocity for W1 photon...
Through a combined theoretical and experimental study of disorder-induced incoherent scattering loss...
We report ensemble-average transport characteristics obtained for a series of photonic-crystal waveg...
We present theory andmeasurements of disorder-induced losses for low loss 1.5mm long slow light phot...
The dispersive properties of waves are strongly affected by inevitable residual disorder in man-made...
We have studied the dispersion of ultrafast pulses in a photonic crystal waveguide as a function of ...
Slow light with a markedly low group velocity is a promising solution for optical buffering and adva...
We experimentally demonstrate wideband dispersion-free slow light in chirped photonic crystal couple...
Les guides à cristaux photoniques sont des guides optiques structurés à des échelles inférieures à l...
We use a single-defect photonic crystal waveguide with ring-shaped holes to achieve a small group ve...
We study efficient injectors for coupling light from z-invariant ridge waveguides into slow Bloch mo...
Small group velocity of light in periodical structures can be utilized to dramatically decrease the ...
Photonic crystal slab line defect waveguides with slightly small innermost holes are theoretically e...
One of the exciting features of photonic crystals is that light may travel at very low group velocit...
We describe the generic effects of loss or gain on pulse propagation in photonic-crystal and plasmon...
We examine the effects of disorder on propagation loss as a function of group velocity for W1 photon...
Through a combined theoretical and experimental study of disorder-induced incoherent scattering loss...
We report ensemble-average transport characteristics obtained for a series of photonic-crystal waveg...
We present theory andmeasurements of disorder-induced losses for low loss 1.5mm long slow light phot...
The dispersive properties of waves are strongly affected by inevitable residual disorder in man-made...
We have studied the dispersion of ultrafast pulses in a photonic crystal waveguide as a function of ...
Slow light with a markedly low group velocity is a promising solution for optical buffering and adva...
We experimentally demonstrate wideband dispersion-free slow light in chirped photonic crystal couple...
Les guides à cristaux photoniques sont des guides optiques structurés à des échelles inférieures à l...
We use a single-defect photonic crystal waveguide with ring-shaped holes to achieve a small group ve...
We study efficient injectors for coupling light from z-invariant ridge waveguides into slow Bloch mo...
Small group velocity of light in periodical structures can be utilized to dramatically decrease the ...
Photonic crystal slab line defect waveguides with slightly small innermost holes are theoretically e...
One of the exciting features of photonic crystals is that light may travel at very low group velocit...
We describe the generic effects of loss or gain on pulse propagation in photonic-crystal and plasmon...
We examine the effects of disorder on propagation loss as a function of group velocity for W1 photon...
Through a combined theoretical and experimental study of disorder-induced incoherent scattering loss...