Title :
Generation of Propagating Bessel Beams Using Leaky-Wave Modes: Experimental Validation
Author :
Ettorre, Mauro ; Rudolph, Scott Michael ; Grbic, Anthony
Author_Institution :
Dept. of Electr. Eng. & Comput. Sci., Univ. of Michigan, Ann Arbor, MI, USA
fDate :
6/1/2012 12:00:00 AM
Abstract :
We present the experimental generation of Bessel beams using a leaky radial waveguide. The radial waveguide consists of a capacitive sheet over a ground plane. The capacitive sheet is composed of patch elements printed on both sides of a dielectric substrate. The radial waveguide is coaxially fed and supports an azimuthally invariant leaky-wave mode whose normal electric-field component is a truncated, zeroth-order Bessel function. Two prototypes are presented with the same propagation constant and lateral extent, but different attenuation constants. 2D electric field measurements and their respective Fourier transforms validate the operation of the prototypes as Bessel-beam launchers at two frequency bands. Cleaner patterns are achieved by the prototype with lower attenuation constant. The dual-band capability and associated frequency dependent resolution can be useful in near-field planar focusing systems. The proposed structure can be used for generating arbitrary zeroth-order propagating Bessel beams at microwave and millimeter-wave frequencies.
Keywords :
Bessel functions; Fourier transforms; coaxial waveguides; microwave materials; microwave propagation; millimetre wave propagation; 2D electric field measurement; Bessel beam propagation; Fourier transforms; capacitive sheet; coaxially fed radial waveguide; dielectric substrate; electric field component; ground plane; lateral extent; leaky radial waveguide; leaky wave mode; microwave frequency; millimeter wave frequency; near field planar focusing system; patch elements; propagation constant; truncated Bessel function; zeroth-order Bessel function; Dispersion; Electric variables measurement; Frequency measurement; Impedance; Propagation constant; Prototypes; Surface impedance; Bessel beams; diffraction-free beams; leaky-wave modes; no diffractive waves;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2012.2194674