Quantum Physics · Physics
Fano Interference in Microwave Resonator Measurements
D. Rieger, S. Günzler, M. Spiecker, A. Nambisan +2
2023-07-31
Quantum Physics · Physics
Circle fit optimization for resonator quality factor measurements: point redistribution for maximal accuracy
Paul G. Baity, Connor Maclean, Valentino Seferai, Joe Bronstein +3
2026-02-09
Applied Physics · Physics
A highly accurate measurement of resonator $Q$-factor and resonance frequency
B. Gyüre-Garami, O. Sági, B. G. Márkus, F. Simon
2018-12-03
Other Condensed Matter · Physics
A time domain based method for the accurate measurement of Q-factor and resonance frequency of microwave resonators
B. Gyüre, B. G. Márkus, B. Bernáth, F. Murányi +1
2015-09-15
Mesoscale and Nanoscale Physics · Physics
Planar Superconducting Resonators with Internal Quality Factors above One Million
A. Megrant, C. Neill, R. Barends, B. Chiaro +15
2015-06-03
Applied Physics · Physics
On the Calculation of the Quality Factor in Contemporary Photonic Resonant Structures
Thomas Christopoulos, Odysseas Tsilipakos, Georgios Sinatkas, Emmanouil E. Kriezis
2019-05-22
Instrumentation and Detectors · Physics
Comparing unloaded Q-factor of a high-Q dielectric resonator measured using the transmission mode and reflection mode methods involving S-parameter circle fitting
Kenneth Leong, Janina E. Mazierska, Mohan V. Jacob, Dimitri O. Ledenyov +1
2012-07-26
Mesoscale and Nanoscale Physics · Physics
Parameter Extraction and Support-Loss in MEMS Resonators
P. G. Steeneken, J. J. M. Ruigrok, S. Kang, J. T. M. van Beek +2
2013-05-01
Mesoscale and Nanoscale Physics · Physics
An analysis method for transmission measurements of superconducting resonators with applications to quantum-regime dielectric-loss measurements
Chunqing Deng, Martin Otto, Adrian Lupascu
2013-08-09
Quantum Physics · Physics
Quantum dot micropillar cavities with quality factors exceeding 250,000
Christian Schneider, Peter Gold, Stephan Reitzenstein, Sven Hoefling +1
2016-02-17
Quantum Physics · Physics
The scattering coefficients of superconducting microwave resonators: I. Transfer-matrix approach
Qi-Ming Chen, Meike Pfeiffer, Matti Partanen, Florian Fesquet +8
2022-12-21
Applied Physics · Physics
Loss channels affecting lithium niobate phononic crystal resonators at cryogenic temperature
E. Alex Wollack, Agnetta Y. Cleland, Patricio Arrangoiz-Arriola, Timothy P. McKenna +5
2021-03-30
Mesoscale and Nanoscale Physics · Physics
Millimeter Wave Localization: Slow Light and Enhanced Absorption
John A. Scales, L. D. Carr, D. B. McIntosh, Valentin Freilikher +1
2009-11-13
Superconductivity · Physics
Improving the Quality Factor of Microwave Compact Resonators by Optimizing their Geometrical Parameters
K. Geerlings, S. Shankar, E. Edwards, L. Frunzio +2
2012-06-06
Applied Physics · Physics
Materials loss measurements using superconducting microwave resonators
Corey Rae Harrington McRae, Haozhi Wang, Jiansong Gao, Michael Vissers +4
2021-09-08
Mesoscale and Nanoscale Physics · Physics
Transmission of a Symmetric Light Pulse through a Wide QW
L. I. Korovin, I. G. Lang, D. A. Contreras-Solorio, S. T. Pavlov
2009-11-07
Quantum Physics · Physics
Readout of quantum devices with a sideband microwave interferometer immune to systematic noise
N. Crescini, E. G. Kelly, G. Salis, A. Fuhrer
2023-03-14
Optics · Physics
Semicylindrical microresonator: excitation, modal structure, and Q factor
Hovhannes Haroyan, Henrik Parsamyan, Torgom Yezekyan, Khachatur Nerkararyan
2022-06-02