Title :
Broadside radiation enhancement using a spiral resonator MNZ metamaterial substrate
Author :
Ferrer, P.J. ; Romeu, J. ; González-Arbesú, J.M. ; Parrón, J. ; Capolino, F. ; Bilotti, F. ; Vegni, L. ; Lovat, G. ; Burghignoli, P.
Author_Institution :
AntennaLab, Univ. Politec. de Catalunaya, Barcelona
Abstract :
The broadside power radiation enhancement has been tested for the case of a magnetic dipole in presence of an MNZ metamaterial substrate. In order to assess the theoretical estimations, a slot antenna on a ground plane has been fabricated and an AMC composed of 1 layer square spiral resonators has been used as an MNZ metamaterial slab. The radiation patterns have been measured in the anechoic chamber, achieving a gain in directivity of more than 1 dB. However, it should be taken into account that the thickness of the fabricated metamaterial slab (6 mm) is much smaller than the theoretical optimum thickness (hundreds of mm). The directivity of the antenna might be improved when increasing the number of layers of the metamaterial slab; in fact, in such a case, the leaky waves responsible of directive radiation are expected to be more significantly excited giving rise to the sought broadside power enhancement.
Keywords :
anechoic chambers (electromagnetic); antenna radiation patterns; dipole antennas; metamaterials; slot antennas; spiral antennas; AMC; anechoic chamber; broadside power radiation enhancement; directive radiation; magnetic dipole; radiation patterns; slot antenna; spiral resonator MNZ metamaterial substrate; square spiral resonators; Antenna radiation patterns; Antenna theory; Dipole antennas; Estimation theory; Magnetic materials; Metamaterials; Slabs; Slot antennas; Spirals; Testing;
Conference_Titel :
Antennas and Propagation Society International Symposium, 2008. AP-S 2008. IEEE
Conference_Location :
San Diego, CA
Print_ISBN :
978-1-4244-2041-4
Electronic_ISBN :
978-1-4244-2042-1
DOI :
10.1109/APS.2008.4619285