Bulletin of the American Physical Society
APS March Meeting 2019
Volume 64, Number 2
Monday–Friday, March 4–8, 2019; Boston, Massachusetts
Session K26: Superconducting Qubits: Noise and Decoherence I
8:00 AM–11:00 AM,
Wednesday, March 6, 2019
BCEC
Room: 160B
Sponsoring
Unit:
DQI
Chair: David Pappas, National Institute of Standards and Technology Boulder
Abstract: K26.00005 : An analysis method for two superconducting resonators with common defects
8:48 AM–9:00 AM
Presenter:
Neda Forouzani
(University of Maryland, Laboratory for Physical Sciences)
Authors:
Neda Forouzani
(University of Maryland, Laboratory for Physical Sciences)
Bahman Sarabi
(Laboratory for Physical Sciences)
Omid Noroozian
(NASA Goddard Space Flight Center)
Edward Wollack
(NASA Goddard Space Flight Center)
Samuel H Moseley
(NASA Goddard Space Flight Center)
Kevin Daniel Osborn
(Laboratory for Physical Sciences)
We report on a novel device consisting of a pair of superconducting circuit resonators with nearly degenerate resonances. The resonators share the same capacitor C which is engineered as an electrical capacitor bridge such that the capacitances for the resonators share the same defects. One of the resonators is made tunable using the nonlinearity of titanium nitride’s kinetic inductance and is current biased, such that the detuning from degeneracy can be controlled. The design allows us to study virtually the same ensemble of atomic-sized two-level tunneling systems (TLSs) coupled to both resonators when degenerate. Slightly off resonance they should be affected by correlated noise but also allow measurement through separate readout lines. In this talk we analyze the device with a new 4 port, 2 resonator scattering theory. This will allow the extraction of two related TLS losses, many resonator couplings related by device symmetry, and an analysis of the noise.
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