We develop a systematic approach for simultaneous extraction of the dispersion relations and profiles of multiple modes in periodic waveguides though a special global optimization procedure applied to near-field electric field measurements in the waveguide plane. We apply this method to perform in-depth analysis of experimental data on wave propagation close to an interface between waveguide sections with different dispersion characteristics, and we successfully identify several modes contributing to the experimentally measured fields. We find clear evidence that when the group velocity is reduced across the interface, evanescent modes that facilitate the excitation of propagating slow-light waves appear, confirming previous theoretical pre...
We study propagation losses in slow light photonic crystal waveguides and show that dispersion engin...
We study propagation losses in slow light photonic crystal waveguides and show that dispersion engin...
We have designed slow light photonic crystal waveguides operating in a low loss and constant dispers...
We experimentally study the fields close to an interface between two photonic crystal waveguides tha...
We show that efficient coupling between fast and slow photonic crystal waveguide modes is possible, ...
Efficient coupling between fast and slow PC waveguide modes is possible if strong evanescent modes a...
We demonstrate that the spatial profiles of both propagating and evanescent Bloch modes in a periodi...
We demonstrate that the spatial profiles of both propagating and evanescent Bloch modes in a periodi...
We present a semi-analytic method to calculate the dispersion curves and the group velocity of photo...
Optical structures with dimensions down to nanometer length scales have been a topic for investigati...
We formulate and demonstrate experimentally the highresolution spectral method based on Bloch-wave ...
One of the exciting features of photonic crystals is that light may travel at very low group velocit...
We study propagation losses in slow light photonic crystal waveguides and show that dispersion engin...
We study propagation losses in slow light photonic crystal waveguides and show that dispersion engin...
We study propagation losses in slow light photonic crystal waveguides and show that dispersion engin...
We study propagation losses in slow light photonic crystal waveguides and show that dispersion engin...
We study propagation losses in slow light photonic crystal waveguides and show that dispersion engin...
We have designed slow light photonic crystal waveguides operating in a low loss and constant dispers...
We experimentally study the fields close to an interface between two photonic crystal waveguides tha...
We show that efficient coupling between fast and slow photonic crystal waveguide modes is possible, ...
Efficient coupling between fast and slow PC waveguide modes is possible if strong evanescent modes a...
We demonstrate that the spatial profiles of both propagating and evanescent Bloch modes in a periodi...
We demonstrate that the spatial profiles of both propagating and evanescent Bloch modes in a periodi...
We present a semi-analytic method to calculate the dispersion curves and the group velocity of photo...
Optical structures with dimensions down to nanometer length scales have been a topic for investigati...
We formulate and demonstrate experimentally the highresolution spectral method based on Bloch-wave ...
One of the exciting features of photonic crystals is that light may travel at very low group velocit...
We study propagation losses in slow light photonic crystal waveguides and show that dispersion engin...
We study propagation losses in slow light photonic crystal waveguides and show that dispersion engin...
We study propagation losses in slow light photonic crystal waveguides and show that dispersion engin...
We study propagation losses in slow light photonic crystal waveguides and show that dispersion engin...
We study propagation losses in slow light photonic crystal waveguides and show that dispersion engin...
We have designed slow light photonic crystal waveguides operating in a low loss and constant dispers...