DocumentCode
3731523
Title
Low-Dissipation Multiplexed Flux-Sensitive Readout in Superconducting Circuits
Author
Mark H. Volkmann;Loren J. Swenson;Peter Spear;Bruce Bumble;Peter K. Day;Byeong Ho Eom;Jed D. Whittaker;Fabio Altomare;Andrew J. Berkley;Alan Kleinsasser;Paul Bunyk;Richard Harris;Jeremy P. Hilton;Emile H. Hoskinson;Mark W. Johnson;Eric Ladizinsky;Trevor M
Author_Institution
Processor Dev. Group, D-Wave Syst., Inc., Burnaby, BC, Canada
fYear
2015
fDate
7/1/2015 12:00:00 AM
Firstpage
1
Lastpage
3
Abstract
D-Wave´s quantum processors require a high-fidelity readout architecture for fast and accurate operation. The need for cold operation precludes readout methods with significant dissipation. The readout architecture must be scalable and compatible with an inherently dense qubit circuit layout. Superconducting microresonators have been successfully utilized as detection elements for a wide variety of applications, enabling superior multiplexing factors. In existing designs, resonators undergo a non-uniform shift in frequency and sensitivity with fabrication imperfections, ultimately limiting effective bandwidth utilization. We overcome this drawback by implementing independent control of both frequency and sensitivity. We describe the design of the detector and report experimental results demonstrating its resilience to fabrication tolerances.
Keywords
"SQUIDs","Resonant frequency","Shift registers","Arrays","Superconducting microwave devices","Inductance"
Publisher
ieee
Conference_Titel
Superconductive Electronics Conference (ISEC), 2015 15th International
Type
conf
DOI
10.1109/ISEC.2015.7383467
Filename
7383467
Link To Document