The eigenfield distribution and the band structure of a photonic crystal waveguide have been measured with a phase-sensitive near-field scanning optical microscope. Bloch modes, which consist of more than one spatial frequency, are visualized in the waveguide. In the band structure, multiple Brillouin zones due to zone folding are observed, in which positive and negative dispersion is seen. The negative slopes are shown to correspond to a negative phase velocity but a positive group velocity. The lateral mode profile for modes separated by one reciprocal lattice vector is found to be different.</p
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...
The periodic structure of a photonic crystal causes the propagating waves to be governed by Bloch's ...
The eigenfield distribution and the band structure of a photonic crystal waveguide have been measure...
The eigenfield distribution and the band structure of a photonic crystal waveguide have been measure...
The eigenfield distribution and the band structure of a photonic crystal waveguide have been measure...
The local dispersion relation of a photonic crystal waveguide is directly determined by phase-sensit...
The local dispersion relation of a photonic crystal waveguide is directly determined by phase-sensit...
We perform phase-sensitive near-field scanning optical microscopy on photonic-crystal waveguides. Th...
We retrieve the dispersion properties of photonic crystal waveguides near the band edge with high ex...
We retrieve the dispersion properties of photonic crystal waveguides near the band edge with high ex...
Photonic crystals (PhCs) act on light in two different ways: confinement and modification of propaga...
One of the exciting features of photonic crystals is that light may travel at very low group velocit...
We have measured the photonic bandstructure of GaAs photonic-crystal waveguides with high resolution...
We have measured the photonic bandstructure of GaAs photonic-crystal waveguides with high resolution...
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...
The periodic structure of a photonic crystal causes the propagating waves to be governed by Bloch's ...
The eigenfield distribution and the band structure of a photonic crystal waveguide have been measure...
The eigenfield distribution and the band structure of a photonic crystal waveguide have been measure...
The eigenfield distribution and the band structure of a photonic crystal waveguide have been measure...
The local dispersion relation of a photonic crystal waveguide is directly determined by phase-sensit...
The local dispersion relation of a photonic crystal waveguide is directly determined by phase-sensit...
We perform phase-sensitive near-field scanning optical microscopy on photonic-crystal waveguides. Th...
We retrieve the dispersion properties of photonic crystal waveguides near the band edge with high ex...
We retrieve the dispersion properties of photonic crystal waveguides near the band edge with high ex...
Photonic crystals (PhCs) act on light in two different ways: confinement and modification of propaga...
One of the exciting features of photonic crystals is that light may travel at very low group velocit...
We have measured the photonic bandstructure of GaAs photonic-crystal waveguides with high resolution...
We have measured the photonic bandstructure of GaAs photonic-crystal waveguides with high resolution...
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...
The periodic structure of a photonic crystal causes the propagating waves to be governed by Bloch's ...