Fabrication and Device Design of Superconducting Qubits
FOCUS · E30 · ID: 381371
Presentations
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Superconducting qubits containing through-silicon vias
ORAL
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Presenters
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Thomas Hazard
MIT Lincoln Laboratory, MIT Lincoln Lab, Department of Electrical Engineering, Princeton University, Lincoln Laboratory, MIT, MIT - Lincoln Laboratory
Authors
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Thomas Hazard
MIT Lincoln Laboratory, MIT Lincoln Lab, Department of Electrical Engineering, Princeton University, Lincoln Laboratory, MIT, MIT - Lincoln Laboratory
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Mollie Schwartz
MIT Lincoln Laboratory, MIT Lincoln Lab, Lincoln Laboratory, MIT, MIT - Lincoln Laboratory
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Wayne Woods
MIT Lincoln Lab, MIT Lincoln Laboratory, Lincoln Laboratory, MIT, MIT - Lincoln Laboratory
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Danna Rosenberg
MIT Lincoln Laboratory, MIT Lincoln Lab, Lincoln Laboratory, MIT, MIT - Lincoln Laboratory
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Kyle Serniak
MIT Lincoln Lab, MIT Lincoln Laboratory, MIT-Lincoln Lab, Lincoln Laboratory, MIT, MIT - Lincoln Laboratory
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Rabindra Das
MIT Lincoln Lab, MIT Lincoln Laboratory, Lincoln Laboratory, MIT, MIT - Lincoln Laboratory
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David K Kim
MIT Lincoln Lab, MIT Lincoln Laboratory, Lincoln Laboratory, MIT, MIT - Lincoln Laboratory, Massachusetts Institute of Technology MIT
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Jeffrey M Knecht
MIT Lincoln Lab, MIT Lincoln Laboratory, Lincoln Laboratory, MIT, MIT - Lincoln Laboratory
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Justin L Mallek
MIT Lincoln Lab, MIT Lincoln Laboratory, Lincoln Laboratory, MIT, MIT - Lincoln Laboratory
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Alexander Melville
MIT Lincoln Lab, MIT Lincoln Laboratory, Lincoln Laboratory, MIT, MIT - Lincoln Laboratory
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Bethany Niedzielski
MIT Lincoln Laboratory, MIT Lincoln Lab, Lincoln Laboratory, MIT, MIT - Lincoln Laboratory, Massachusetts Institute of Technology MIT
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Donna-Ruth Yost
MIT Lincoln Lab, MIT Lincoln Laboratory, Lincoln Laboratory, MIT, MIT - Lincoln Laboratory
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Jonilyn Yoder
MIT Lincoln Laboratory, MIT Lincoln Lab, Research Laboratory of Electronics, Massachusetts Institute of Technology, Lincoln Laboratory, MIT, MIT - Lincoln Laboratory, Massachusetts Institute of Technology MIT
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William Oliver
MIT Lincoln Laboratory, Research Laboratory of Electronics, Massachusetts Institute of Technology, Research Laboratory of Electronics, MIT Lincoln Laboratory, Department of Electrical Engineering and Computer Science, MIT Research Laboratory of Electronics, MIT Lincoln Laboratory, MIT Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology MIT, Massachusetts Institute of Technology, Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology, Research Laboratory of Electronics, Massachusetts Institute of Technology, MIT Lincoln Laboratory, MIT, MIT, MIT Lincoln Lab, MIT Lincoln Lab, MIT Lincoln Lab, Massachusetts Institute of Technology, Research Laboratory of Electronics, Department of Electrical Engineering and Computer Science, and Department of Physics, Massachusetts Institute of Technology. MIT Lincoln L, Department of Physics, Department of Electrical Engineering & Computer Science, Research Laboratory of Electronics, MIT Lincoln Laboratory, Massachusetts Institute of Technol, Lincoln Laboratory, Research Laboratory of Electronics, and Department of Electrical Engineering & Computer Science, MIT
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The Most Coherent Superconducting Qubit?
ORAL
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Presenters
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Aaron Somoroff
University of Maryland, College Park, University of Maryland
Authors
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Aaron Somoroff
University of Maryland, College Park, University of Maryland
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Quentin Ficheux
University of Maryland, College Park, University of Maryland, Ecole Normale Superieure de Lyon, Univ Lyon, ENS de Lyon, Univ Claude Bernard, CNRS, Laboratoire de Physique,F-69342 Lyon,France
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Ray Mencia
University of Maryland, College Park
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Haonan Xiong
University of Maryland, College Park
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Konstantin Nesterov
University of Wisconsin-Madison, University of Wisconsin - Madison, University of Wisconsin - Madison, Madison, University of Wisconsin, Madison
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Maxim G Vavilov
University of Wisconsin-Madison, Department of Physics and Wisconsin Quantum Institute, University of Wisconsin - Madison, University of Wisconsin - Madison, University of Wisconsin - Madison, Madison, Department of Physics, University of Wisconsin-Madison, University of Wisconsin, Madison
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Vladimir Manucharyan
University of Maryland, College Park, Department of Physics, University of Maryland, University of Maryland
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Fabrication methods for high-coherence and scalable fluxonium qubits
ORAL
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Presenters
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Jin Qin
Alibaba Quantum Laboratory Experimental Team, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory
Authors
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Jin Qin
Alibaba Quantum Laboratory Experimental Team, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory
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Ran Gao
Alibaba Quantum Laboratory Experimental Team, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory
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Feng Bao
Alibaba Quantum Laboratory Experimental Team, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory
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Hao Deng
Alibaba Quantum Laboratory Experimental Team, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Princeton University
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Hsiang-Sheng Ku
Alibaba Quantum Laboratory Experimental Team, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory
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Xun Jiang
Alibaba Quantum Laboratory Experimental Team, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory
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Zhisheng Li
Alibaba Quantum Laboratory Experimental Team, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory
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Xiaotong Ni
Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory
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Zhijun Song
Alibaba Quantum Laboratory Experimental Team, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory
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Hantao Sun
Alibaba Quantum Laboratory Experimental Team, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory
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Chengchun Tang
Alibaba Quantum Laboratory Experimental Team, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory
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Tenghui Wang
Alibaba Quantum Laboratory Experimental Team, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory
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Feng Wu
Alibaba Quantum Laboratory Experimental Team, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory
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Wenlong Yu
Alibaba Quantum Laboratory Experimental Team, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory
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Tian Xia
Alibaba Quantum Laboratory Experimental Team, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory
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Gengyan Zhang
Alibaba Quantum Laboratory Experimental Team, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory
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Xiaohang Zhang
Alibaba Quantum Laboratory Experimental Team, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory
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Jingwei Zhou
Alibaba Quantum Laboratory Experimental Team, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory
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Xing Zhu
Alibaba Quantum Laboratory Experimental Team, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory
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Hui-Hai Zhao
Alibaba Quantum Laboratory Experimental Team, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory, Alibaba Group, Alibaba Quantum Laboratory
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Chunqing Deng
Alibaba Quantum Laboratory
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Development of the quantum processing units (QPUs) at IQM Finland Oy
ORAL
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Presenters
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Wei Liu
IQM Quantum Computers, IQM Finland Oy
Authors
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Wei Liu
IQM Quantum Computers, IQM Finland Oy
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Tianyi Li
IQM Quantum Computers, IQM Finland Oy
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Manjunath Venkatesh
IQM Quantum Computers, IQM Finland Oy
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Chun Fai Chan
IQM Finland Oy
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Fabian Marxer
ETH Zurich, IQM Finland Oy
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Mate Jenei
IQM Finland Oy
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Lily Yang
IQM Finland Oy
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Vasilii Sevriuk
IQM Quantum Computers, IQM Finland Oy
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Hasnain Ahmad
IQM Finland Oy
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Roope Kokkoniemi
QCD Labs, Aalto University, IQM Finland Oy
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Kristinn Juliusson
IQM Finland Oy
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Jari Penttilä
IQM Finland Oy
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Janne Kotilahti
IQM Finland Oy
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Johannes Heinsoo
IQM Quantum Computers, IQM Finland Oy
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Caspar Ockeloen-Korppi
IQM Finland Oy
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Jean-Luc Orgiazzi
IQM Finland Oy
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Jayanta Sarkar
IQM Finland Oy
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Pasi Lähteenmäki
IQM Finland Oy
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Kok Wai Chan
National University of Singapore, IQM Finland Oy
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Juha Hassel
IQM Quantum Computers, IQM, VTT Technical Research Centre of Finland Ltd, IQM Finland Oy
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Jorge Tiago Santos
IQM Finland Oy
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Jan Goetz
IQM Quantum Computers, IQM Finland Oy
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Juha Vartiainen
IQM Finland Oy
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Mikko Möttönen
QCD Labs, Aalto University, QCD Labs, Department of Applied Physics, Aalto University, IQM Finland Oy
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Kuan Yen Tan
QCD Labs, Aalto University, IQM Quantum Computers, Quantum Engineer, IQM Finland Oy, IQM Finland Oy
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Mode Hybridization and Radiative Properties of an Artificial Atom coupled to a Josephson Junction Array
ORAL
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Presenters
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Kanupriya Sinha
Princeton University, Department of Electrical Engineering, Princeton University
Authors
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Kanupriya Sinha
Princeton University, Department of Electrical Engineering, Princeton University
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Saeed Khan
Department of Electrical Engineering, Princeton University, Princeton University
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Hakan E Tureci
Princeton University, Department of Electrical Engineering, Princeton University
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Fast qubit resetting with a quantum-circuit refrigerator
ORAL
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Presenters
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Timm Mörstedt
QCD Labs, Department of Applied Physics, Aalto University
Authors
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Timm Mörstedt
QCD Labs, Department of Applied Physics, Aalto University
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Giacomo Catto
QCD Labs, Department of Applied Physics, Aalto University
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Arto Viitanen
QCD Labs, Department of Applied Physics, Aalto University
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Tianyi Li
IQM Quantum Computers, IQM Finland Oy
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Wei Liu
IQM Quantum Computers, IQM Finland Oy
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Joni Ikonen
IQM Quantum Computers, QCD Labs, Department of Applied Physics, Aalto University, IQM, IQM Finland Oy
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Vasilii Sevriuk
IQM Quantum Computers, IQM Finland Oy
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Jan Goetz
IQM Quantum Computers, IQM Finland Oy
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Máté Jenei
IQM Quantum Computers, IQM Finland Oy
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Matti Silveri
Nano and Molecular Systems Research Unit, University of Oulu, Nano and molecular systems research unit, University of Oulu, Nano and molecular systems research unit, Univ of Oulu, University of Oulu
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Matti Partanen
QCD Labs, Aalto University, Walther-Meißner-Institut, Bavarian Academy of Sciences and Humanities, Walther-Meißner-Institut, Technische Universität München, Walther-Meißner-Institute, Bavarian Academy of Sciences and Humanities & Physik-Department, Technische Universität München, Germany, QCD Labs, Department of Applied Physics, Aalto University
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Leif Grönberg
VTT Micro & Nanoelectronics, VTT Techical Research Center of Finland Ltd., VTT Technical Research Centre of Finland Ltd, QTF Centre of Excellence, VTT Technical Research Centre of Finland Ltd.
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Visa Vesterinen
VTT, VTT Micro & Nanoelectronics, VTT Techical Research Center of Finland Ltd., VTT Technical Research Centre of Finland Ltd
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Gianluigi Catelani
JARA Institute for Quantum Information, Forschungszentrum Jülich, Forschungszentrum Juelich GmbH, Forschungszentrum Julich, JARA-Institute Quantum Information (PGI-11), Forschungszentrum Jülich
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Tapio Ala-Nissila
MSP Group, Department of Applied Physics, Aalto University, Department of Applied Physics, Aalto University
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Mikko Möttönen
QCD Labs, Aalto University, QCD Labs, Department of Applied Physics, Aalto University, IQM Finland Oy
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Photon-Number-Dependent Effective Lamb Shift Induced by a Radio-Frequency Quantum-Circuit Refrigerator
ORAL
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Presenters
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Mikko Mottonen
Air Force Institute of Tech - WPAFB, QCD Labs, Department of Applied Physics, Aalto University
Authors
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Mikko Mottonen
Air Force Institute of Tech - WPAFB, QCD Labs, Department of Applied Physics, Aalto University
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Arto Viitanen
QCD Labs, Department of Applied Physics, Aalto University
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Matti Silveri
Nano and Molecular Systems Research Unit, University of Oulu, Nano and molecular systems research unit, University of Oulu, Nano and molecular systems research unit, Univ of Oulu, University of Oulu
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Máté Jenei
IQM Quantum Computers, IQM Finland Oy
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Vasilii Sevriuk
IQM Quantum Computers, IQM Finland Oy
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Kuan Yen Tan
QCD Labs, Aalto University, IQM Quantum Computers, Quantum Engineer, IQM Finland Oy, IQM Finland Oy
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Matti Partanen
QCD Labs, Aalto University, Walther-Meißner-Institut, Bavarian Academy of Sciences and Humanities, Walther-Meißner-Institut, Technische Universität München, Walther-Meißner-Institute, Bavarian Academy of Sciences and Humanities & Physik-Department, Technische Universität München, Germany, QCD Labs, Department of Applied Physics, Aalto University
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Jan Goetz
IQM Quantum Computers, IQM Finland Oy
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Leif Grönberg
VTT Micro & Nanoelectronics, VTT Techical Research Center of Finland Ltd., VTT Technical Research Centre of Finland Ltd, QTF Centre of Excellence, VTT Technical Research Centre of Finland Ltd.
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Valtteri Lahtinen
QCD Labs, Department of Applied Physics, Aalto University
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Superconducting circuits for probing quantum materials
ORAL
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Presenters
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Ruichao Ma
Purdue University, Department of Physics and Astronomy, Purdue University
Authors
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Ruichao Ma
Purdue University, Department of Physics and Astronomy, Purdue University
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Jeremy Cadiente
Purdue University
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Botao Du
Purdue University
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Gozde Iloglu
Purdue University
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Fabrication Control of Superconducting Qubit Devices
Invited
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Presenters
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Bethany Niedzielski
MIT Lincoln Laboratory, MIT Lincoln Lab, Lincoln Laboratory, MIT, MIT - Lincoln Laboratory, Massachusetts Institute of Technology MIT
Authors
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Bethany Niedzielski
MIT Lincoln Laboratory, MIT Lincoln Lab, Lincoln Laboratory, MIT, MIT - Lincoln Laboratory, Massachusetts Institute of Technology MIT
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Dynamics of superconducting qubit relaxation
ORAL
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Presenters
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Malcolm Carroll
IBM Quantum, T.J. Watson Research Center
Authors
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Malcolm Carroll
IBM Quantum, T.J. Watson Research Center
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Sami Rosenblatt
IBM Quantum, T.J. Watson Research Center, IBM TJ Watson Research Center
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Abhinav Kandala
IBM Quantum, T.J. Watson Research Center
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Exciting qubits and excited quasiparticles: the effect of actively pumping a qubit on its environment
ORAL
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Presenters
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Niv Drucker
Quantum Machines
Authors
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Niv Drucker
Quantum Machines
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Martin Spiecker
Karlsruhe Institute of Technology
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Daria Gusenkova
Karlsruhe Institute of Technology
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Francesco Valenti
Karlsruhe Institute of Technology
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Ivan Takmakov
Karlsruhe Institute of Technology
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Patrick Winkel
Karlsruhe Institute of Technology
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Alexey Ustinov
Karlsruhe Institute of Technology
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Wolfgang Wernsdorfer
Karlsruhe Institute of Technology
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Yonatan Cohen
Quantum Machines, CEO, Quantum Machines, CTO, Quantum Machines, Karlsruhe Institute of Technology
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Ioan-Mihai Pop
Karlsruhe Institute of Technology
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Richard Gebauer
Karlsruhe Institute of Technology
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Nick Karcher
Karlsruhe Institute of Technology
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Denis Rieger
Karlsruhe Institute of Technology
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Oliver Sander
Karlsruhe Institute of Technology
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Sub-Kelvin Thermometer for On-Chip Measurements of Microwave Devices Utilizing Two-Level Systems in Superconducting Microresonators
ORAL
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Presenters
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Jordan D. Wheeler
National Institute of Standards and Technology Boulder
Authors
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Jordan D. Wheeler
National Institute of Standards and Technology Boulder
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michael R. vissers
National Institute of Standards and Technology Boulder, National Institute of Standards and Technology
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Maxime Malnou
NIST, Boulder, National Institute of Standards and Technology, National Institute of Standards and Technology Boulder
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Jiansong Gao
NIST, Boulder, National Institute of Standards and Technology Boulder
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Johannes Hubmayr
National Institute of Standards and Technology Boulder
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Joel N Ullom
National Institute of Standards and Technology, National Institute of Standards and Technology Boulder
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Flux Qubits Fabricated using a High-Coherence Transmon Fabrication Process
ORAL
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Presenters
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Trevor Chistolini
Physics, University of California, Berkeley, Univ of California - Berkeley
Authors
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Trevor Chistolini
Physics, University of California, Berkeley, Univ of California - Berkeley
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William Livingston
University of California, Berkeley, Univ of California – Berkeley, Univ of California - Berkeley
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John Mark Kreikebaum
Lawrence Berkeley National Laboratory, University of California, Berkeley, Univ of California – Berkeley, Physics, University of California, Berkeley
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David Ivan Santiago
Lawrence Berkeley National Laboratory, University of California, Berkeley, Lawrence Berkely National Laboratory, Quantum Nanoelectronics Laboratory, Dept. of Physics, University of California, Berkeley
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Irfan Siddiqi
Lawrence Berkeley National Laboratory, University of California, Berkeley, Univ of California - Berkeley, Univ of California – Berkeley, Quantum Nanoelectronics Lab, UC Berkeley, Physics, University of California, Berkeley, Quantum Nanoelectronics Laboratory, Dept. of Physics, University of California, Berkeley
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