Quantum Control: Quantum Gates
ORAL · D36 · ID: 46704
Presentations
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Qutrit Entanglement With Differential AC Stark Shift
ORAL
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Presenters
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Noah Goss
- University of California Berkeley
Authors
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Noah Goss
- University of California Berkeley
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Alexis Morvan
- Lawrence Berkeley National Laboratory
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Brad Mitchell
- Lawrence Berkeley National Laboratory
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Brian Marinelli
- University of California, Berkeley
- Computational Research Division, Lawrence Berkeley National Lab
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Ravi K Naik
- University of California, Berkeley
- Lawrence Berkeley National Laboratory
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David I Santiago
- Lawrence Berkeley National Laboratory
- Computational Research Division, Lawrence Berkeley National Lab
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Irfan Siddiqi
- University of California, Berkeley
- Applied Mathematics and Computational Research and Materials Sciences Divisions, LBNL
- Lawrence Berkeley National Laboratory
- Applied Mathematics, Computational Research and Materials Sciences Divisions, Lawrence Berkeley National Lab
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A quantum module with all-to-all gates via parametric control
ORAL
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Publication: [1] C. Zhou, et al. A modular quantum computer based on a quantum state router, arXiv: 2109.06848 (2021).
Presenters
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Pinlei Lu
- University of Pittsburgh
Authors
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Pinlei Lu
- University of Pittsburgh
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Chao Zhou
- University of Pittsburgh
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Mingkang Xia
- University of Pittsburgh
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Ryan Kaufman
- University of Pittsburgh
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Israa Yusuf
- University of Pittsburgh
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Param J Patel
- University of Pittsburgh
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Boris Mesits
- University of Pittsburgh
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Maria M Mucci
- University of Pittsburgh
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Michael J Hatridge
- University of Pittsburgh
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Modular coupling approach using ancilla transmons with flux-tunable hybridization
ORAL
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Presenters
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Daniel L Campbell
- AFRL
- United States Air Force Research Laboratory, Information Directorate, Rome NY 13441 USA
- United States Air Force Research Laboratory, Information Directorate
Authors
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Daniel L Campbell
- AFRL
- United States Air Force Research Laboratory, Information Directorate, Rome NY 13441 USA
- United States Air Force Research Laboratory, Information Directorate
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Archana Kamal
- University of Massachusetts Lowell
- Department of Physics and Applied Physics, University of Massachusetts, Lowell, MA 01854, USA
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Leonardo M Ranzani
- BBN Technology - Massachusetts
- Raytheon BBN Technologies, Cambridge MA 02138, USA
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Michael Senatore
- Department of Physics, Syracuse University; United States Air Force Research Laboratory, Information Directorate, Rome NY 13441 USA
- Department of Physics, Syracuse University; United States Air Force Research Laboratory, Information Directorate
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Matthew LaHaye
- United States Airforce Research Laboratory, Information Directorate, Rome NY 13441 USA
- United States Air Force Research Laboratory, Information Directorate, Rome NY 13441 USA
- United States Air Force Research Laboratory, Information Directorate
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Mitigating off-resonant error in the cross-resonance gate
ORAL
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Publication: arXiv preprint arXiv:2108.03223
Presenters
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Moein Malekakhlagh
- IBM TJ Watson Research Center
Authors
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Moein Malekakhlagh
- IBM TJ Watson Research Center
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Easwar Magesan
- IBM Quantum
- IBM TJ Watson Research Center
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Towards high-fidelity two-qubit gates on fluxonium qubits
ORAL
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Presenters
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Haonan Xiong
- University of Maryland, College Park
Authors
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Haonan Xiong
- University of Maryland, College Park
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Quentin Ficheux
- University of Maryland, College Park
- Ecole Normale Supérieure de Lyon
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Konstantin Nesterov
- University of Wisconsin - Madison
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Aaron Somoroff
- University of Maryland, College Park
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Ray A Mencia
- University of Maryland, College Park
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Roman Kuzmin
- University of Maryland, College Park
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Maxim G Vavilov
- University of Wisconsin - Madison
- UW-Madison
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Vladimir Manucharyan
- University of Maryland, College Park
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Microwave activated two-qubit gate for fluxonium qubits via a tunable-transmon coupler
ORAL
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Presenters
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Leon Ding
- Massachusetts Institute of Technology MIT
- Massachusetts Institute of Technology MI
Authors
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Leon Ding
- Massachusetts Institute of Technology MIT
- Massachusetts Institute of Technology MI
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Youngkyu Sung
- Massachusetts Institute of Technology MIT
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Bharath Kannan
- Massachusetts Institute of Technology MIT
- Massachusetts Institute of Technology MI
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Agustin Di Paolo
- Research Laboratory of Electronics, Massachusetts Institute of Technology, Cambridge, MA 02139, USA
- Universite de Sherbrooke
- MIT
- Massachusetts Institute of Technology MIT
- Research Laboratory of Electronics, Massachusetts Institute of Technology
- Massachusetts Institute of Technology
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Junyoung An
- Massachusetts Institute of Technology MI
- Massachusetts Institute of Technology MIT
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Max Hays
- Yale University
- Department of Electrical Engineering & Computer Science and Department of Physics, Massachusetts Institute of Technology
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Roni Winik
- Massachusetts Institute of Technology MIT
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Kyle Serniak
- MIT Lincoln Lab
- MIT Lincoln Laboratory
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Thomas M Hazard
- MIT Lincoln Lab
- MIT Lincoln Laboratory
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David K Kim
- MIT Lincoln Lab
- MIT Lincoln Laboratory
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Bethany M Niedzielski
- MIT Lincoln Lab
- MIT Lincoln Laboratory
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Alexander Melville
- MIT Lincoln Laboratory
- MIT Lincoln Lab
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Jonilyn L Yoder
- MIT Lincoln Lab
- MIT Lincoln Laboratory
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Mollie E Schwartz
- MIT Lincoln Lab
- MIT Lincoln Laboratory
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Devin L Underwood
- IBM TJ Watson Research Center
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Terry P Orlando
- Massachusetts Institute of Technology MIT
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Simon Gustavsson
- Massachusetts Institute of Technology MIT
- Massachusetts Institute of Technology
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William D Oliver
- Massachusetts Institute of Technology MIT
- Massachusetts Institute of Technology Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology Research Laboratory of Electronics
- MIT Lincoln Laboratory and Department of Electrical Engineering & Computer Science and Department of Physics, Massachusetts Institute of Technology
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The siZZle Gate – Using AC Stark tones to modulate ZZ in Superconducting Transmon Qubits
ORAL
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Publication: K. X. Wei, E. Magesan, I. Lauer, S. Srinivasan, D. F. Bogorin, S. Carnevale, G. A. Keefe, Y. Kim, D. Klaus, W. Landers, N. Sundaresan, C. Wang, E. J. Zhang, M. Steffen, O. E. Dial, D. C. McKay, A. Kandala. "Quantum crosstalk cancellation for fast entangling gates and improved multi-qubit performance". arXiv:2106.00675 (2021)
Presenters
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David C McKay
- IBM TJ Watson Research Center
- IBM Quantum
Authors
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David C McKay
- IBM TJ Watson Research Center
- IBM Quantum
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Xuan Wei
- IBM Quantum
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Easwar Magesan
- IBM Quantum
- IBM TJ Watson Research Center
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Isaac Lauer
- IBM Quantum
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Srikanth Srinivasan
- IBM Quantum
- IBM Quantum, IBM TJ Watson Research Center
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Daniela F Bogorin
- IBM Quantum
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Santino Carnevale
- IBM Quantum
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George Keefe
- IBM Quantum
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Youngseok Kim
- IBM
- IBM TJ Watson Research Center
- IBM Quantum
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David Klaus
- IBM Quantum
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William Landers
- IBM Quantum
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Neereja Sundaresan
- IBM Quantum
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Cindy Wang
- IBM Quantum
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Eric J Zhang
- IBM Quantum
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M. Steffen
- IBM Quantum
- IBM Research
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Oliver E Dial
- IBM, TJ Watson Research Center
- IBM Quantum
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Abhinav Kandala
- IBM
- IBM Quantum
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Understanding the speed limits of parametrically pumped quantum gates
ORAL
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Presenters
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Chao Zhou
- University of Pittsburgh
Authors
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Chao Zhou
- University of Pittsburgh
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Pinlei Lu
- University of Pittsburgh
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Daniel K Weiss
- Northwestern University
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Mingkang Xia
- University of Pittsburgh
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Ryan Kaufman
- University of Pittsburgh
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Param J Patel
- University of Pittsburgh
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Boris Mesits
- University of Pittsburgh
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Israa Yusuf
- University of Pittsburgh
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Maria M Mucci
- University of Pittsburgh
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David Pekker
- University of Pittsburgh
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Jens Koch
- Northwestern University
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Michael J Hatridge
- University of Pittsburgh
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Robust entangling shaped pulses for cavity-coupled silicon quantum dot spin qubits with always-on coupling
ORAL
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Presenters
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Utkan Güngördü
- Laboratory for Physical Sciences
Authors
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Utkan Güngördü
- Laboratory for Physical Sciences
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Jason P Kestner
- University of Maryland, Baltimore County
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Charles Tahan
- Laboratory for Physical Sciences
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Crosstalk resistant CZ gate robust against charge noise in silicon two qubit devices
ORAL
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Presenters
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David W Kanaar
- University of Maryland, Baltimore County
Authors
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David W Kanaar
- University of Maryland, Baltimore County
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Jason P Kestner
- University of Maryland, Baltimore County
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Utkan Güngördü
- Laboratory for Physical Sciences
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Demonstration of an entangling gate between non-interacting qubits using the quantum Zeno effect
ORAL
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Publication: E. Blumenthal, et al., arXiv:2108.08549 (2021)
Presenters
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Eliya Blumenthal
- Technion
Authors
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Eliya Blumenthal
- Technion
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Birgitta Whaley
- University of California, Berkeley
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asaf A diringer
- Technion, Israel institute of technology
- Technion
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Leigh S Martin
- Harvard University
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Daniel Burgrath
- Macquarie University
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Shay Hacohen-Gourgy
- Technion - Israel Institute of Technology
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Chen Mor
- Technion
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Crosstalk Cancellation in The Tunable-Coupling Architecture with Fixed-Frequency Qubits
ORAL
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Presenters
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Orkesh Nurbolat
- Nanjing University
Authors
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Orkesh Nurbolat
- Nanjing University
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Ji Chu
- Southern University of Science and Technology
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Zhikun Han
- Southern University of Science and Technology
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Yang Yu
- Nanjing Univ
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Fei Yan
- Southern University of Science and Technology
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Implementing dispersive readout of superconducting qubits with simultaneous resonator reset
ORAL
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Presenters
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Markus Jerger
- Forschungszentrum Juelich
Authors
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Markus Jerger
- Forschungszentrum Juelich
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Felix Motzoi
- Wilhelm-Johnen-Straße
- Forschungszentrum Jülich GmbH
- Forschungszentrum Juelich
- Forschungszentrum Jülich
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Christian Dickel
- University of Cologne
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Daniel J Weigand
- Forschungszentrum Juelich
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Jonas Bylander
- Chalmers Univ of Tech
- Chalmers University of Technology
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David P DiVincenzo
- JARA Institute for Quantum Information, RWTH Aachen University
- Forschungszentrum Juelich
- JARA Institute for Quantum Information, RWTH Aachen University, Germany
- Peter Grünberg Institut, Forschungszentrum Jülich
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Rami Barends
- Peter Gruenberg Institute for Functional Quantum Systems, Juelich Research Center
- Peter Gr\"{u}nberg Institute for Functional Quantum Systems, J\"{u}lich Research Center
- Forschungszentrum Juelich
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Pavel Bushev
- Forschungszentrum Juelich
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Halving ion-trap two-qubit gate time while enhancing frequency-drift robustness
ORAL
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Publication: Halving ion-trap two-qubit gate time while enhancing frequency-drift robustness (planned paper)
Presenters
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Seyed Shakib Vedaie
- University of Calgary
Authors
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Seyed Shakib Vedaie
- University of Calgary
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Eduardo Paez
- University of Calgary
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Barry C Sanders
- University of Calgary
- Institute for Quantum Science and Technology, University of Calgary
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