International audienceThe generation and propagation of Bessel beams between two apertures with obstructed line-of-sight at microwave frequencies is studied herein. Both the transmitting and receiving apertures are based on leaky radial waveguides consisting of an array of metallic patches over a grounded dielectric substrate. The present work focuses in the case where an axially aligned metallic obstacle is placed between the two launchers to validate the self-healing feature of Bessel beams. Obstacles with different radius are considered and their effect in the power efficiency studied. A limit for the radius' scatterer is defined up to which the self-healing property of the generated Bessel beam is valid
International audienceWe present a Bessel-beam launcher based on a leaky radial waveguide consisting...
International audienceA study of the self-healing property of weakly-diffractive vector beams radiat...
Wireless Power Transfer has become a promising technology to overcome the limits of wired solutions....
International audienceThe generation and propagation of Bessel beams between two apertures with obst...
The power transfer efficiency of a partially obstructed wireless link operating in the Fresnel regio...
International audienceWe present the experimental generation of Bessel beams using a leaky radial wa...
International audienceBessel beams present the peculiar properties of being non-diffractive and self...
International audienceThe generation of propagating Bessel beams is typically limited to optical fre...
International audienceThis chapter illustrates the capabilities of non-diffractive Bessel beams for ...
International audienceWe report a leaky radial waveguide that can generate propagating Bessel beams ...
In many antenna applications, such as near-field probing and imaging, focusing or collimating energy...
International audienceThe generation of Bessel beams using a leaky radial waveguide is presented. Th...
International audienceWe present a Bessel-beam launcher based on a leaky radial waveguide consisting...
International audienceA study of the self-healing property of weakly-diffractive vector beams radiat...
Wireless Power Transfer has become a promising technology to overcome the limits of wired solutions....
International audienceThe generation and propagation of Bessel beams between two apertures with obst...
The power transfer efficiency of a partially obstructed wireless link operating in the Fresnel regio...
International audienceWe present the experimental generation of Bessel beams using a leaky radial wa...
International audienceBessel beams present the peculiar properties of being non-diffractive and self...
International audienceThe generation of propagating Bessel beams is typically limited to optical fre...
International audienceThis chapter illustrates the capabilities of non-diffractive Bessel beams for ...
International audienceWe report a leaky radial waveguide that can generate propagating Bessel beams ...
In many antenna applications, such as near-field probing and imaging, focusing or collimating energy...
International audienceThe generation of Bessel beams using a leaky radial waveguide is presented. Th...
International audienceWe present a Bessel-beam launcher based on a leaky radial waveguide consisting...
International audienceA study of the self-healing property of weakly-diffractive vector beams radiat...
Wireless Power Transfer has become a promising technology to overcome the limits of wired solutions....