2011 International Conference on Infrared, Millimeter, and Terahertz Waves 2011
DOI: 10.1109/irmmw-thz.2011.6105074
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W-band two-dimensional periodic surface lattice for a surface field Cherenkov maser

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Cited by 2 publications
(8 citation statements)
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“…It has been assumed that the relative permeability is πœ‡ π‘Ÿ =1. The inner radius of the 'effective metadielectric' is smaller than the minimum radius of the 2D-PSL [22] and the surface field protrudes beyond the lattice. The electron beam can therefore intercept and excite the surface field without touching the walls of the structure.…”
Section: Design and Theorymentioning
confidence: 94%
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“…It has been assumed that the relative permeability is πœ‡ π‘Ÿ =1. The inner radius of the 'effective metadielectric' is smaller than the minimum radius of the 2D-PSL [22] and the surface field protrudes beyond the lattice. The electron beam can therefore intercept and excite the surface field without touching the walls of the structure.…”
Section: Design and Theorymentioning
confidence: 94%
“…The cosinusoidal corrugation on the inner cavity wall is defined: π‘Ÿ = π‘Ÿ 0 + βˆ†π‘Ÿπ‘π‘œπ‘ (π‘˜ Μ… 𝑧 𝑧)π‘π‘œπ‘ (π‘š Μ…πœ‘) where βˆ†π‘Ÿ is the corrugation amplitude and π‘š Μ… is the number of azimuthal variations. The azimuthal period 𝑑 π‘š = 2πœ‹π‘Ÿ 0 π‘š Μ… ⁄ is constrained by the wave-beam coupling criterion [22] for the low voltage regime π‘š Μ… ≀ 2πœ‹π‘Ÿ 0 πœ†π›Ύ ⁄ , where 𝛾 is the relativistic Lorentz factor. The full set of parameters is given in Table I.…”
Section: Design and Theorymentioning
confidence: 99%
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