International audienceSlow and fast light are achieved in two experiments using SPS photorefractive crystal at room temperature. We report that the photorefractive gain achieved by the two wave mixing (TWM) method can control the group velocity of the transmitted light pulses at visible wavelength. It is shown theoretically and experimentally that the time delay and the shape of the output pulse change as a function of the photorefractive gain. The beam fanning has also been used to control the velocity propagation of a single light pulse in the same crystal at λ = 1064 nm. Depending on the orientation of the polar axis, it is possible to accelerate or decelerate a short pulse with duration of order of µs in the crystal. Slow light, photore...
The basic physical principles responsible for two-wave interaction via an impressed grati...
For many applications of slow or stopped light, the delay-time-bandwidth product is a fundamental is...
The phenomenon of slow light is discussed, with a focus on slow light structures based on photonic c...
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 audienceWe experimentally observe an ultralow effective group velocity of 0.9 cm/s of ...
International audienceThe beam fanning naturally occurring in a photorefractive crystal is shown to ...
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...
<p>We propose and demonstrate nonlinear amplifications of self-accelerating Airy beams by two-wave m...
Slow light is light that travels at unusual, extreme group velocities—sometimes as slow as walking s...
I describe in this thesis various techniques of optical signal processing using photorefractive BSO ...
We describe a new method for photorefractive response time measurement in fast photorefractive cryst...
Over the past few years, researchers have directed a significant amount of effort towards realizing ...
Thesis (Ph.D.)--University of Rochester. Institute of Optics, 2013.This thesis presents a variety of...
The basic physical principles responsible for two-wave interaction via an impressed grati...
For many applications of slow or stopped light, the delay-time-bandwidth product is a fundamental is...
The phenomenon of slow light is discussed, with a focus on slow light structures based on photonic c...
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 audienceWe experimentally observe an ultralow effective group velocity of 0.9 cm/s of ...
International audienceThe beam fanning naturally occurring in a photorefractive crystal is shown to ...
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...
<p>We propose and demonstrate nonlinear amplifications of self-accelerating Airy beams by two-wave m...
Slow light is light that travels at unusual, extreme group velocities—sometimes as slow as walking s...
I describe in this thesis various techniques of optical signal processing using photorefractive BSO ...
We describe a new method for photorefractive response time measurement in fast photorefractive cryst...
Over the past few years, researchers have directed a significant amount of effort towards realizing ...
Thesis (Ph.D.)--University of Rochester. Institute of Optics, 2013.This thesis presents a variety of...
The basic physical principles responsible for two-wave interaction via an impressed grati...
For many applications of slow or stopped light, the delay-time-bandwidth product is a fundamental is...
The phenomenon of slow light is discussed, with a focus on slow light structures based on photonic c...