Focus Session: Superconducting Qubits: Measurement and Novel Architectures
FOCUS · W39 ·
Presentations
-
Parity Protection in Flux-Pairing Qubits
ORAL
–
Authors
-
Wenyuan Zhang
- Rutgers University
-
Matthew Bell
- Rutgers University and University of Massachusetts, Boston
-
Xiaoyue Jin
- Rutgers University
-
Lev Ioffe
- Rutgers University and LPTHE, CNRS France
-
Michael Gershenson
- Rutgers University
-
-
Adjusting the dc-SQUID working point by a flux trapping loop for readout of gap-tunable flux qubit
ORAL
–
Authors
-
Xiaobo Zhu
- Chinese Academy of Sci (CAS)
-
Yulin Wu
- Chinese Academy of Sci (CAS)
-
Hui Deng
- Chinese Academy of Sci (CAS)
-
Yarui Zheng
- Chinese Academy of Sci (CAS)
-
Naheed Akhtar
- Chinese Academy of Sci (CAS)
-
Jie Fan
- Chinese Academy of Sci (CAS)
-
Dongning Zheng
- Chinese Academy of Sci (CAS)
-
Li Lu
- Chinese Academy of Sci (CAS)
-
-
cQED readout error from leakage to a neighboring qubit
ORAL
–
Authors
-
Mostafa Khezri
- University of California, Riverside
-
Justin Dressel
- University of California, Riverside
-
Alexander N. Korotkov
- University of California, Riverside
-
-
Microwave Photon Detection Using an Impedance-Matched $\Lambda$ System
ORAL
–
Authors
-
Kunihiro Inomata
- RIKEN
-
Zhirong Lin
- RIKEN
-
Kazuki Koshino
- Tokyo Medical and Dental University
-
William Oliver
- MIT Lincoln Laboratory
-
JawShen Tsai
- RIKEN
-
Yasunobu Nakamura
- RIKEN and The University of Tokyo
-
Tsuyoshi Yamamoto
- NEC Smart Energy Research Laboratories
-
-
High-fidelity dispersive readout using squeezed light. Part I
ORAL
–
Authors
-
Nicolas Didier
- McGill University and Universite de Sherbrooke
- McGill University, Universit\'e de Sherbrooke
-
Archana Kamal
- Massachusetts Institute of Technology
-
Samuel Boutin
- Universite de Sherbrooke
-
William D. Oliver
- MIT Lincoln Laboratory
-
Alexandre Blais
- Universite de Sherbrooke
-
Aashish A. Clerk
- McGill University
-
-
High-fidelity dispersive readout using squeezed light. Part II
ORAL
–
Authors
-
Archana Kamal
- Massachusetts Institute of Technology
- Research Laboratory of Electronics, Massachusetts Institute of Technology
- Research Laboratory of Electronics, MIT
- MIT
-
Nicolas Didier
- McGill University/Universite de Sherbrooke
-
Samuel Boutin
- Universite de Sherbrooke
-
Simon Gustavsson
- Massachusetts Institute of Technology
-
Andrew J. Kerman
- MIT Lincoln Laboratory
-
William D. Oliver
- MIT Lincoln Laboratory
-
Terry P. Orlando
- Massachusetts Institute of Technology
-
Alexandre Blais
- Universite de Sherbrooke
-
Aashish A. Clerk
- McGill University
-
-
Optimal Control of Quantum Measurement for Superconducting Phase Qubits
ORAL
–
Authors
-
Frank K. Wilhelm
- Saarland University
- Universit\"at des Saarlandes
-
Daniel Egger
- Saarland University
-
-
Fast Resonator Depopulation with a Simple Measurement Pulse Shape
ORAL
–
Authors
-
Douglas McClure
- IBM Research
-
Hanhee Paik
- IBM Research
-
Lev S. Bishop
- IBM Research
-
Jay Gambetta
- IBM Research
-
Matthias Steffen
- IBM Research
-
Jerry Chow
- IBM Research
-
-
Adjustable Josephson Coupler for Transmon Qubit Measurement
COFFEE_KLATCH · Invited
–
Authors
-
Evan Jeffrey
- Google Inc.
-
-
Quantum analysis of a bandpass Purcell filter for accurate qubit readout
ORAL
–
Authors
-
Eyob A. Sete
- University of California, Riverside
-
John Martinis
- University of California and Google Inc., Santa Barbara
- Google Inc, Santa Barbara
- UC Santa Barbara and Google Inc.
-
Alexander N. Korotkov
- University of California, Riverside
-
-
Characterizing a Superconducting Resonator with Frequency-Compensated Tunable Coupling
ORAL
–
Authors
-
James Wenner
- University of California, Santa Barbara
-
B. Campbell
- University of California, Santa Barbara
-
Z. Chen
- University of California, Santa Barbara
-
B. Chiaro
- University of California, Santa Barbara
-
A. Dunsworth
- University of California, Santa Barbara
-
I.-C. Hoi
- University of California, Santa Barbara
-
J. Kelly
- University of California, Santa Barbara
-
A. Megrant
- University of California, Santa Barbara
-
C. Neill
- University of California, Santa Barbara
-
P.J.J. O'Malley
- University of California, Santa Barbara
-
C. Quintana
- University of California, Santa Barbara
-
A. Vainsencher
- University of California, Santa Barbara
-
T.C. White
- University of California, Santa Barbara
-
R. Barends
- Google, Santa Barbara
-
Y. Chen
- Google, Santa Barbara
-
A.G. Fowler
- Google, Santa Barbara
-
E. Jeffrey
- Google, Santa Barbara
-
J.Y. Mutus
- Google, Santa Barbara
-
P. Roushan
- Google, Santa Barbara
-
D. Sank
- Google, Santa Barbara
-
John M. Martinis
- University of California and Google, Santa Barbara
-
-
Design of a Tunable 3D Microwave Cavity for Use in Coupling to Quantum Superconducting Circuits
ORAL
–
Authors
-
C.J. Ballard
- JQI and CNAM, Dept. of Physics, University of Maryland
-
R.P. Budoyo
- JQI and CNAM, Dept. of Physics, University of Maryland
-
K.D. Voigt
- JQI and CNAM, Dept. of Physics, University of Maryland
-
J.B. Hertzberg
- JQI and CNAM, Dept. of Physics, University of Maryland
-
J.R. Anderson
- JQI and CNAM, Dept. of Physics, University of Maryland
-
C.J. Lobb
- JQI and CNAM, Dept. of Physics, University of Maryland
-
F.C. Wellstood
- JQI and CNAM, Dept. of Physics, University of Maryland
-
-
Scalable architecture for coherent microwave control of weakly anharmonic qubits
ORAL
–
Authors
-
Duije Deurloo
- TNO (Netherlands Organisation for Applied Scientific Research), Delft
-
Wouter Vlothuizen
- TNO (Netherlands Organisation for Applied Scientific Research), Delft
-
Leo DiCarlo
- Delft University of Technology, Delft
- Delft University of Technology
-