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- W2587538417 abstract "We model the angular distributions of the emissions from the transverse magnetic cavity modes of two types of antenna shapes. The six degenerate fundamental cavity excitations of a thin equilateral triangular antenna are studied using the magnetic Love equivalence principle [1,2,3], and used to fit the angular distributions of the emissions observed in two planes from such antennas consisting of mesas fabricated from the high-temperature superconductor Bi2Sr2CaCu2O8+Ⴅ (Bi2212) [2,3]. Similar fits are obtained for the dual-plane emissions detected from a thin acute isosceles triangular mesa antenna [4], which we model as a narrow-angle pie-shaped wedge antenna. The predictions for the TM(2,0)o cavity mode are found to be in good agreement with experiment [4] . Then we study the many predicted TM cavity modes present in thin pie-shaped wedge antennas of various wedge angles. Three-dimensional plots of some of the predicted angular distributions of the emissions from a variety of modes in a variety of pie-shaped wedge cavities are presented. References [1] R. A. Klemm and K. Kadowaki, J. Phys.: Condens. Matter 21, 375701 (2010). [2] R. A. Klemm et al., Physica C 491, 30 (2013). [3] K. Delfanazari et al., Physica C 491, 16 (2013). [4] K. Delfanazari et al., Opt. Express 21, 2171 (2013)." @default.
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- W2587538417 date "2014-11-30" @default.
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- W2587538417 title "Invited) Emission distributivities from novel geometrical antennas" @default.
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