Bulletin of the American Physical Society
APS March Meeting 2018
Volume 63, Number 1
Monday–Friday, March 5–9, 2018; Los Angeles, California
Session L33: Fluxonium and Flux Tunable Qubits
11:15 AM–2:15 PM,
Wednesday, March 7, 2018
LACC
Room: 408B
Sponsoring
Unit:
DQI
Chair: Michel Devoret, Yale Univ
Abstract ID: BAPS.2018.MAR.L33.6
Abstract: L33.00006 : High-coherence fluxonium qubit
12:39 PM–12:51 PM
Presenter:
Long Nguyen
(Univ of Maryland-College Park)
Authors:
Long Nguyen
(Univ of Maryland-College Park)
Yen-Hsiang Lin
(Univ of Maryland-College Park)
Nicholas Grabon
(Univ of Maryland-College Park)
Raymond Mencia
(Univ of Maryland-College Park)
Aaron Somoroff
(Univ of Maryland-College Park)
Vladimir Manucharyan
(Univ of Maryland-College Park)
We report coherence measurement of a 3D fluxonium circuit capacitively coupled to a box resonator. The circuit was fabricated by Al evaporation on an untreated silicon substrate. Energy relaxation time (T1) varies from a few microseconds at integer flux to over 100 microseconds at half-integer flux sweet spot, and coherence time (T2) approaches 2T1. Interestingly, T1 is limited at the sweet spot by dielectric loss with an effective loss tangent an order of magnitude higher than a recently reported value in transmon devices [1, 2]. Therefore, we expect that our fluxonium design has the potential to reach millisecond coherence once state-of-the-art fabrication techniques are employed. We discuss possible mechanisms that may limit T2 at the millisecond scale and ways to circumvent them.
[1] Y. Chu, C. Axline, C. Wang, T. Brecht, Y. Gao, L. Frunzio and R. Schoelkopf, Applied Physics Letters 109, (2016).
[2] C. Wang, C. Axline, Y. Gao, T. Brecht, Y. Chu, L. Frunzio, M. Devoret and R. Schoelkopf, Applied Physics Letters 107, (2015).
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.MAR.L33.6
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