2020
DOI: 10.1016/j.rinp.2020.103279
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Nonlinear frequency response of the multi-resonant ring cavities

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Cited by 10 publications
(3 citation statements)
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“…Then the experimental investigation of the transmission of the MRR with a radius of 32 µm is carried out. The analytical relation for the MRR transmission at the drop port in an add-drop configuration reads 32,33 :…”
Section: Elementary Test Structuresmentioning
confidence: 99%
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“…Then the experimental investigation of the transmission of the MRR with a radius of 32 µm is carried out. The analytical relation for the MRR transmission at the drop port in an add-drop configuration reads 32,33 :…”
Section: Elementary Test Structuresmentioning
confidence: 99%
“…Then the experimental investigation of the transmission of the MRR with a radius of 32 µm is carried out. The analytical relation for the MRR transmission at the drop port in an add–drop configuration reads 32,33 : TMRR=κ2eαlTWe2αl2eαl(1κ)cos(βl)+(1κ)2, ${T}_{\text{MRR}}=\frac{{\kappa }^{2}{{\rm{e}}}^{\alpha l}{T}_{{\rm{W}}}}{{{\rm{e}}}^{2\alpha l}-2{{\rm{e}}}^{\alpha l}(1-\kappa )\cos (\beta l)+{(1-\kappa )}^{2}},$where α is the damping decrement.…”
Section: Elementary Test Structuresmentioning
confidence: 99%
“…Исследуемая структура намагничена до насыщения однородным магнитным полем перпендикулярно направлению распространения волны, что необходимо для возбуждения и распространения поверхностных электромагнитно-спиновых волн (ЭМСВ) [27]. В соответствии с работой [28], суперпозиция бесконечного числа циркулирующих в кольце волн позволяет записать амплитуду циркулирующего сигнала и коэффициент передачи по мощности в следующей форме:…”
Section: теория формирования спектраunclassified