International audienceThe beam fanning naturally occurring in a photorefractive crystal is shown to slow down a single light pulse at room temperature. Slow light is demonstrated for both visible and infrared wavelength light pulses as short as the response time of the photorefractive crystal and with fractional delayi.e ratio of delay to output pulse duration-up to 0.4
Slow light is light that travels at unusual, extreme group velocities—sometimes as slow as walking s...
Slow light with a remarkably low group velocity is a promising solution for buffering and time-domai...
The physical principles behind the phenomenon of slow light in photonic crystal waveguides, as well ...
International audienceThe beam fanning naturally occurring in a photorefractive crystal is shown to ...
International audienceSlow and fast light are achieved in two experiments using SPS photorefractive ...
International audienceSlowdown of the light velocity has potential applications in information proce...
International audienceSlowdown of Gaussian "dark pulses" in photorefractive crystal using a two-wave...
International audienceWe experimentally demonstrate that light can be decelerated in SPS photorefrac...
International audienceWe experimentally observe an ultralow effective group velocity of 0.9 cm/s of ...
For many applications of slow or stopped light, the delay-time-bandwidth product is a fundamental is...
Thesis (Ph.D.)--University of Rochester. Institute of Optics, 2013.This thesis presents a variety of...
Slow light with a markedly low group velocity is a promising solution for optical buffering and adva...
The phenomenon of slow light is discussed, with a focus on slow light structures based on photonic c...
A high-intensity laser pulse can lead to a change of the group index of a material, so that the puls...
We present detailed calculations of the temporal and spatial evolution of beam fanning in photorefra...
Slow light is light that travels at unusual, extreme group velocities—sometimes as slow as walking s...
Slow light with a remarkably low group velocity is a promising solution for buffering and time-domai...
The physical principles behind the phenomenon of slow light in photonic crystal waveguides, as well ...
International audienceThe beam fanning naturally occurring in a photorefractive crystal is shown to ...
International audienceSlow and fast light are achieved in two experiments using SPS photorefractive ...
International audienceSlowdown of the light velocity has potential applications in information proce...
International audienceSlowdown of Gaussian "dark pulses" in photorefractive crystal using a two-wave...
International audienceWe experimentally demonstrate that light can be decelerated in SPS photorefrac...
International audienceWe experimentally observe an ultralow effective group velocity of 0.9 cm/s of ...
For many applications of slow or stopped light, the delay-time-bandwidth product is a fundamental is...
Thesis (Ph.D.)--University of Rochester. Institute of Optics, 2013.This thesis presents a variety of...
Slow light with a markedly low group velocity is a promising solution for optical buffering and adva...
The phenomenon of slow light is discussed, with a focus on slow light structures based on photonic c...
A high-intensity laser pulse can lead to a change of the group index of a material, so that the puls...
We present detailed calculations of the temporal and spatial evolution of beam fanning in photorefra...
Slow light is light that travels at unusual, extreme group velocities—sometimes as slow as walking s...
Slow light with a remarkably low group velocity is a promising solution for buffering and time-domai...
The physical principles behind the phenomenon of slow light in photonic crystal waveguides, as well ...