aalto1 untyped-item.component.html
Low-characteristic-impedance superconducting tadpole resonators in the sub-gigahertz regime
Loading...
Access rights
openAccess
CC BY
CC BY
Creative Commons license
Except where otherwised noted, this item's license is described as openAccess
publishedVersion
URL
Journal Title
Journal ISSN
Volume Title
A1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä
This publication is imported from Aalto University research portal.
View publication in the Research portal (opens in new window)
View/Open full text file from the Research portal (opens in new window)
View publication in the Research portal (opens in new window)
View/Open full text file from the Research portal (opens in new window)
Unless otherwise stated, all rights belong to the author. You may download, display and print this publication for Your own personal use. Commercial use is prohibited.
Date
Department
Major/Subject
Mcode
Degree programme
Language
en
Pages
10
Series
Physical Review Research, Volume 6, issue 4, pp. 1-10
Abstract
We demonstrate a simple and versatile resonator design based on a short strip of a typical coplanar waveguide shorted at one end to the ground and shunted at the other end with a large parallel-plate capacitor. Due to the shape of the structure, we coin it the tadpole resonator. The design allows tailoring the characteristic impedance of the resonator to especially suit applications requiring low values. We demonstrate characteristic impedances ranging from Zc=2 to 10ω and a frequency range from fr=290MHz to 1.1GHz while reaching internal quality factors of order Qint=8.5×103 translating into a loss tangent of tan(δ)=1.2×10-4 for the aluminum oxide used as the dielectric in the parallel-plate capacitor. We conclude that these tadpole resonators are well suited for applications requiring low frequency and low characteristic impedance while maintaining a small footprint on chip. The low characteristic impedance of the tadpole resonator renders it a promising candidate for achieving strong inductive coupling to other microwave components.
Description
| openaire: EC/H2020/101053801/EU//ConceptQ
Keywords
Other note
Citation
Rasola, M, Klaver, S, Ma, J, Singh, P, Uusnäkki, T, Suominen, H & Möttönen, M 2024, 'Low-characteristic-impedance superconducting tadpole resonators in the sub-gigahertz regime', Physical Review Research, vol. 6, no. 4, 043297, pp. 1-10. https://doi.org/10.1103/PhysRevResearch.6.043297
