Michael R Vissers, Age 4313803 Windom Ln, Westminster, CO 80023

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13803 Windom Ln, Broomfield, CO 80023 (512) 577-5357

414 Conrad Dr, Erie, CO 80516 (720) 389-9171

607 White St, Champaign, IL 61820 (217) 355-9706

Savoy, IL

Katy, TX

Urbana, IL

Newport News, VA

Austin, TX

Boulder, CO

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Us Patents

Low-Loss Superconducting Devices

US Patent:
2013002, Jan 31, 2013
Filed:
Jul 28, 2011
Appl. No.:
13/192597
Inventors:
Antonio D. Corcoles Gonzalez - Mount Kisco NY, US
Jiansong Gao - Boulder CO, US
Dustin A. Hite - Boulder CO, US
George A. Keefe - Cortlandt Manor NY, US
David P. Pappas - Louisville CO, US
Mary E. Rothwell - Ridgefield CT, US
Matthias Steffen - Cortlandt Manor NY, US
Chang C. Tsuei - Chappaqua NY, US
Michael R. Vissers - Erie CO, US
David S. Wisbey - Lafayette CO, US
Assignee:
International Business Machines Corporation - Armonk NY
International Classification:
H01P 7/06
H01L 39/02
H01L 39/24
H01L 25/00
US Classification:
505210, 505470, 505472, 505150, 438665, 333227, 327564
Abstract:
Low-loss superconducting devices and methods for fabricating low loss superconducting devices. For example, superconducting devices, such as superconducting resonator devices, are formed with a (200)-oriented texture titanium nitride (TiN) layer to provide high Q, low loss resonator structures particularly suitable for application to radio-frequency (RF) and/or microwave superconducting resonators, such as coplanar waveguide superconducting resonators. In one aspect, a method of forming a superconducting device includes foaming a silicon nitride (SiN) seed layer on a substrate, and forming a (200)-oriented texture titanium nitride (TiN) layer on the SiN seed layer.

Radiation Suppression Of Superconducting Quantum Bits Using A Conductive Plane

US Patent:
2016010, Apr 14, 2016
Filed:
Dec 5, 2013
Appl. No.:
14/097809
Inventors:
Martin Sandberg - Boulder CO, US
Jiansong Gao - Boulder CO, US
Michael Vissers - Erie CO, US
David Pappas - Louisville CO, US
Assignee:
The United States of America as represented by the Secretary of Commerce - Gaithersburg MD
International Classification:
G06N 99/00
H01L 27/18
H01L 39/22
H01L 39/24
H01L 39/02
H01L 39/12
Abstract:
This invention relates to a quantum computing device and the means for fabrication thereof. One side of the device includes a circuit containing at least one qubit patterned in a film of superconducting material. The other side of the device includes a conductive plane, also formed from a film of superconducting material. The proximity of the conductive plane suppresses radiative decay of the qubit, while readout is achieved by coupling the qubit to a resonator.

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