Focus Session: Superconducting Qubits: Design & Tunable Coupling
FOCUS · A28 ·
Presentations
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Noise spectroscopy and decoherence mitigation during free and driven evolution
COFFEE_KLATCH · Invited
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Authors
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William Oliver
- MIT Lincoln Laboratory
- MIT Lincoln Laboratory; Research Laboratory of Electronics, Massachusetts Institute of Technology
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Engineering Robust Superconducting Qubits
ORAL
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Authors
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Nate Earnest
- University of Chicago
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Thomas Yu
- University of Chicago
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Yao Lu
- University of Chicago
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David Mckay
- Physics Department and James Franck Institute, University of Chicago
- University of Chicago
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Jay Lawrence
- Dartmouth University
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Jens Koch
- Northwestern University
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David Schuster
- Univ of Chicago
- University of Chicago
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Systematic Design of Tuned Transmon Qubits
ORAL
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Authors
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David Abraham
- IBM TJ Watson Research Center
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Jay M. Gambetta
- IBM TJ Watson Research Center
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Jerry M. Chow
- IBM TJ Watson Research Center
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Srikanth Srinivasan
- IBM TJ Watson Research Center
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Matthias Steffen
- IBM TJ Watson Research Center
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Coherence properties of a capacitively-shunt flux qubit
ORAL
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Authors
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Jeffrey Birenbaum
- UC Berkeley
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Adam Sears
- MIT-LL
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Christopher Nugroho
- UC Berkeley
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Ted Gudmundsen
- MIT-LL
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Paul Welander
- MIT-LL
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Jonilyn Yoder
- MIT-LL
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Archana Kamal
- MIT
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Simon Gustavsson
- MIT
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Jamie Kerman
- MIT-LL
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William Oliver
- MIT-LL
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John Clarke
- UC Berkeley
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Design and measurement of improved capacitively-shunted flux qubits
ORAL
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Authors
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Adam Sears
- MIT Lincoln Laboratory
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Jeffrey Birenbaum
- University of California Berkeley
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David Hover
- MIT Lincoln Laboratory
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Theodore Gudmundsen
- MIT Lincoln Laboratory
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Andrew Kerman
- MIT Lincoln Laboratory
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Paul Welander
- MIT Lincoln Laboratory
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Jonilyn L. Yoder
- MIT Lincoln Laboratory
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Simon Gustavsson
- Massachusetts Institute of Technology
- Research Laboratory of Electronics, Massachusetts Institute of Technology
- MIT
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Xiaoyue Jin
- Research Laboratory of Electronics, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139
- Research Laboratory of Electronics, Massachusetts Institute of Technology
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Archana Kamal
- Research Laboratory of Electronics, Massachusetts Institute of Technology
- Massachusetts Institute of Technology
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John Clarke
- Department of Physics, University of California, Berkeley
- University of California, Berkeley
- Dale Van Harlingen, University of Illinois at Urbana-Champaign
- University of California Berkeley
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William Oliver
- MIT Lincoln Laboratory
- MIT Lincoln Laboratory; Research Laboratory of Electronics, Massachusetts Institute of Technology
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Superconducting qubits with adjustable coupling, Part I: Architecture
ORAL
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Authors
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Yu Chen
- Univ of California - Santa Barbara
- UC - Santa Barbara
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C. Neill
- UC Santa Barbara
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P. Roushan
- UC Santa Barbara
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R. Barends
- UC Santa Barbara
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B. Campbell
- UC Santa Barbara
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B. Chiaro
- UC Santa Barbara
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Z. Chen
- UC Santa Barbara
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A. Dunsworth
- UC Santa Barbara
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I. Hoi
- UC Santa Barbara
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E. Jeffrey
- UC Santa Barbara
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J. Mutus
- UC Santa Barbara
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A. Megrant
- UC Santa Barbara
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P. O'Malley
- UC Santa Barbara
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C. Quintana
- UC Santa Barbara
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D. Sank
- UC Santa Barbara
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J. Wenner
- UC Santa Barbara
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T. White
- UC Santa Barbara
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J. Kelly
- UC Santa Barbara
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A.N. Cleland
- UC Santa Barbara
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J.M. Martinis
- UC Santa Barbara
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Superconducting qubits with adjustable coupling, Part II: Fast two-qubit gates
ORAL
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Authors
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Charles Neill
- Univ of California - Santa Barbara
- UCSB
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Yu Chen
- UCSB
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Pedram Roushan
- UCSB
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Rami Barends
- UCSB
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Brooks Campbell
- UCSB
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Zijun Chen
- UCSB
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Ben Chiaro
- UCSB
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Andrew Dunsworth
- UCSB
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IoChun Hoi
- UCSB
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Evan Jeffrey
- UCSB
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Julian Kelly
- UCSB
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Anthony Megrant
- UCSB
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Josh Mutus
- UCSB
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Peter O'Malley
- UCSB
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Chris Quintana
- UCSB
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Daniel Sank
- UCSB
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Jim Wenner
- UCSB
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Ted White
- UCSB
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Andrew Cleland
- UCSB
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John Martinis
- UCSB
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Superconducting qubits with adjustable coupling, Part III: Simulating topological properties of quantum systems
ORAL
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Authors
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Pedram Roushan
- Univ of California - Santa Barbara
- University of California, Santa Barbara
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C. Neill
- University of California, Santa Barbara
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Y. Chen
- University of California, Santa Barbara
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M. Kolodrubetz
- Boston University
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R. Barends
- University of California, Santa Barbara
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I. Hoi
- University of California, Santa Barbara
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E. Jeffrey
- University of California, Santa Barbara
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J.Y. Mutus
- University of California, Santa Barbara
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B. Campbell
- University of California, Santa Barbara
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Z. Chen
- University of California, Santa Barbara
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B. Chiaro
- University of California, Santa Barbara
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A. Dunsworth
- University of California, Santa Barbara
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J. Kelly
- University of California, Santa Barbara
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A. Megrant
- University of California, Santa Barbara
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P. O'Malley
- University of California, Santa Barbara
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C. Quintana
- University of California, Santa Barbara
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D. Sank
- University of California, Santa Barbara
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T. White
- University of California, Santa Barbara
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J. Wenner
- University of California, Santa Barbara
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A. Polkovnikov
- Boston University
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A. Cleland
- University of California, Santa Barbara
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J. Martinis
- University of California, Santa Barbara
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Tunable coupling between two superconducting resonators
ORAL
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Authors
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F. Deppe
- Walther-Meissner-Institut and TU Muenchen, Germany
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F. Wulschner
- Walther-Meissner-Institut and TU Muenchen, Germany
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A. Baust
- Walther-Meissner-Institut and TU Muenchen, Germany
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E. Hoffmann
- Walther-Meissner-Institut and TU Muenchen, Germany
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E.P. Menzel
- Walther-Meissner-Institut and TU Muenchen, Germany
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A. Marx
- Walther-Meissner-Institut and TU Muenchen, Germany
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R. Gross
- Walther-Meissner-Institut and TU Muenchen, Germany
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E. Solano
- Universidad del Pais Vasco UPV/EHU and Ikerbasque, Spain
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D. Zueco
- CSIC-Universidad de Zaragoza and Fundacion ARAID, Spain
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J.-J. Garcia Ripoll
- IFF-CSIC, Madrid, Spain
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Tunable-cavity QED with phase qubits
ORAL
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Authors
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Jed D. Whittaker
- NIST - Boulder
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Fabio da Silva
- NIST - Boulder
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Michael Shane Allman
- NIST - Boulder
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Florent Lecocq
- NIST Boulder
- NIST - Boulder
- NIST-Boulder
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Katarina Cicak
- NIST - Boulder
- NIST
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Adam Sirois
- NIST - Boulder
- University of Colorado at Boulder, NIST-Boulder
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John Teufel
- NIST Boulder
- NIST, Boulder
- NIST - Boulder
- NIST-Boulder
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Jose Aumentado
- NIST Boulder
- NIST - Boulder
- National Institute of Standards and Technology, Boulder, CO
- NIST-Boulder
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Raymond W. Simmonds
- NIST - Boulder
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A Simple, Rapid, and Accurate Method to Calculate Coupling in Coplanar Superconducting Qubit Circuits
ORAL
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Authors
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B. Chiaro
- Univ of California - Santa Barbara
- UC Santa Barbara
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R. Barends
- UC Santa Barbara
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B. Campbell
- UC Santa Barbara
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Y. Chen
- UC Santa Barbara
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Z. Chen
- UC Santa Barbara
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A. Dunsworth
- UC Santa Barbara
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E. Jeffrey
- UC Santa Barbara
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J. Kelly
- UC Santa Barbara
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M. Mariantoni
- UC Santa Barbara
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A. Megrant
- UC Santa Barbara
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J. Mutus
- UC Santa Barbara
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C. Neill
- UC Santa Barbara
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P. O'Malley
- UC Santa Barbara
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C. Quintana
- UC Santa Barbara
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P. Roushan
- UC Santa Barbara
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D. Sank
- UC Santa Barbara
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A. Vainsencher
- UC Santa Barbara
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J. Wenner
- UC Santa Barbara
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T. White
- UC Santa Barbara
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A.N. Cleland
- UC Santa Barbara
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J.M. Martinis
- UC Santa Barbara
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Protected Josephson Rhombi Chains
ORAL
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Authors
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Matthew Bell
- Rutgers University
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Josh Paramanandam
- Rutgers University
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Lev Ioffe
- Rutgers University, LPTHE CNRS France
- Rutgers University
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Michael Gershenson
- Rutgers University
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Controlling discrete and continuous symmetries in ``superradian'' phase transitions
ORAL
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Authors
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Alexandre Baksic
- Laboratoire MPQ, Universite Paris Diderot
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Cristiano Ciuti
- Universite Paris Diderot (paris 7)
- Laboratoire MPQ, Universite Paris Diderot
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