We introduce a new family of (2 + 1)D light beams with pre-engineered abruptly autofocusing properties. These beams have a circularly symmetric input profile that develops outward of a dark disk and oscillates radially as a sublinear-chirp signal, creating a series of concentric intensity rings with gradually decreasing width. The light rays involved in this process form a caustic surface of revolution that bends toward the beam axis at an acceleration rate that is determined by the radial chirp itself. The collapse of the caustic on the axis leads to a large intensity buildup right before the intended focus. This ray-optics interpretation provides valuable insight into the dynamics of abruptly autofocusing waves. © 2011 Optical Society of ...
International audienceWe propose an effective scheme to interpret the abruptly autofocusing vortex b...
We demonstrate analytically and experimentally that a circular abruptly autofocusing (AAF) Airy beam...
We demonstrate optical beam auto-focusing without the need of a focusing lens or nonlinearity. Radia...
We introduce a new family of (2 + 1)D light beams with pre-engineered abruptly autofocusing properti...
We introduce a new family of (2 + 1)D light beams with pre-engineered abruptly autofocusing properti...
We introduce a new class of (2 + 1)D spatial and (3 + 1)D spatiotemporal waves that tend to autofocu...
We introduce a new class of (2 + 1)D spatial and (3 + 1)D spatiotemporal waves that tend to autofocu...
We introduce a new class of ð2þ 1ÞD spatial and ð3þ 1ÞD spatiotemporal waves that tend to autofocus ...
We propose a simple yet efficient method for generating abruptly autofocusing optical beams with arb...
We report on the experimental observation of abruptly autofocusing waves. This interesting family of...
We report on the experimental observation of abruptly autofocusing waves. This interesting family of...
A controllable manipulation of the energy distribution of caustic beams possessing rectangular symme...
We report on the experimental observation of abruptly autofocusing waves. This interesting family of...
We demonstrate analytically and experimentally that a circular abruptly autofocusing (AAF) Airy beam...
We observe optical trapping and manipulation of dielectric microparticles using autofocusing radiall...
International audienceWe propose an effective scheme to interpret the abruptly autofocusing vortex b...
We demonstrate analytically and experimentally that a circular abruptly autofocusing (AAF) Airy beam...
We demonstrate optical beam auto-focusing without the need of a focusing lens or nonlinearity. Radia...
We introduce a new family of (2 + 1)D light beams with pre-engineered abruptly autofocusing properti...
We introduce a new family of (2 + 1)D light beams with pre-engineered abruptly autofocusing properti...
We introduce a new class of (2 + 1)D spatial and (3 + 1)D spatiotemporal waves that tend to autofocu...
We introduce a new class of (2 + 1)D spatial and (3 + 1)D spatiotemporal waves that tend to autofocu...
We introduce a new class of ð2þ 1ÞD spatial and ð3þ 1ÞD spatiotemporal waves that tend to autofocus ...
We propose a simple yet efficient method for generating abruptly autofocusing optical beams with arb...
We report on the experimental observation of abruptly autofocusing waves. This interesting family of...
We report on the experimental observation of abruptly autofocusing waves. This interesting family of...
A controllable manipulation of the energy distribution of caustic beams possessing rectangular symme...
We report on the experimental observation of abruptly autofocusing waves. This interesting family of...
We demonstrate analytically and experimentally that a circular abruptly autofocusing (AAF) Airy beam...
We observe optical trapping and manipulation of dielectric microparticles using autofocusing radiall...
International audienceWe propose an effective scheme to interpret the abruptly autofocusing vortex b...
We demonstrate analytically and experimentally that a circular abruptly autofocusing (AAF) Airy beam...
We demonstrate optical beam auto-focusing without the need of a focusing lens or nonlinearity. Radia...