We show the real-space observation of fast and slow pulses propagating inside a photonic crystal waveguide by time-resolved near-field scanning optical microscopy. Local phase and group velocities of modes are measured. For a specific optical frequency we observe a localized pattern associated with a flat band in the dispersion diagram. During at least 3 ps, movement of this field is hardly discernible: its group velocity would be at most c/1000. The huge trapping times without the use of a cavity reveal new perspectives for dispersion and time control within photonic crystals.</p
The light propagation inside photonic crystals has a strong similarity to the wave propagation of a ...
We discuss recent progress and the exciting potential of scanning probe microscopy methods for the c...
The local dispersion relation of a photonic crystal waveguide is directly determined by phase-sensit...
We show the real-space observation of fast and slow pulses propagating inside a photonic crystal wav...
Optical structures with dimensions down to nanometer length scales have been a topic for investigati...
One of the exciting features of photonic crystals is that light may travel at very low group velocit...
We have studied the dispersion of ultrafast pulses in a photonic crystal waveguide as a function of ...
Time-resolved near-field microscopy allows the propagation of ultrafast pulses to be visualized en r...
Time-resolved near-field microscopy allows the propagation of ultrafast pulses to be visualized en r...
We demonstrate that ultrabroadband ultrashort-pulse white light supercontinua can be used to track t...
Conventionally, researchers study pulse propagation by coupling pulses into a medium and deducing wh...
Abstract: We report time-of-flight experiments on photonic-crystal waveguide structures using optica...
The propagation of short light pulses through advanced photonic structures like photonic crystals is...
We report on the direct visualization of a femtosecond pulse propagating through a dispersive waveg...
Ultrafast optical gating was used to resolve the time of flight of photons through photonic crystal ...
The light propagation inside photonic crystals has a strong similarity to the wave propagation of a ...
We discuss recent progress and the exciting potential of scanning probe microscopy methods for the c...
The local dispersion relation of a photonic crystal waveguide is directly determined by phase-sensit...
We show the real-space observation of fast and slow pulses propagating inside a photonic crystal wav...
Optical structures with dimensions down to nanometer length scales have been a topic for investigati...
One of the exciting features of photonic crystals is that light may travel at very low group velocit...
We have studied the dispersion of ultrafast pulses in a photonic crystal waveguide as a function of ...
Time-resolved near-field microscopy allows the propagation of ultrafast pulses to be visualized en r...
Time-resolved near-field microscopy allows the propagation of ultrafast pulses to be visualized en r...
We demonstrate that ultrabroadband ultrashort-pulse white light supercontinua can be used to track t...
Conventionally, researchers study pulse propagation by coupling pulses into a medium and deducing wh...
Abstract: We report time-of-flight experiments on photonic-crystal waveguide structures using optica...
The propagation of short light pulses through advanced photonic structures like photonic crystals is...
We report on the direct visualization of a femtosecond pulse propagating through a dispersive waveg...
Ultrafast optical gating was used to resolve the time of flight of photons through photonic crystal ...
The light propagation inside photonic crystals has a strong similarity to the wave propagation of a ...
We discuss recent progress and the exciting potential of scanning probe microscopy methods for the c...
The local dispersion relation of a photonic crystal waveguide is directly determined by phase-sensit...