Qubit Measurement
FOCUS · R32 · ID: 380880
Presentations
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Realizing large, tunable dispersive shifts with parametric couplings – Part I
ORAL
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Presenters
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Zhihao Xiao
- University of Massachusetts Lowell
Authors
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Zhihao Xiao
- University of Massachusetts Lowell
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Taewan Noh
- National Institute of Standards and Technology Boulder
- University of Massachusetts Lowell
- National Institute of Standards and Technology
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Emery Doucet
- University of Massachusetts Lowell
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Leonardo Ranzani
- BBN Technology - Massachusetts
- Raytheon BBN Technologies
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Luke Govia
- Raytheon BBN Technologies
- BBN Technology - Massachusetts
- BBN Technologies
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Raymond W Simmonds
- National Institute of Standards and Technology Boulder
- National Institute of Standards and Technology
- National Institute of Standards and Technology, Boulder, USA
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Jose Aumentado
- National Institute of Standards and Technology Boulder
- National Institute of Standards and Technology
- National Institute of Standards and Technology, Boulder, USA
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Archana Kamal
- University of Massachusetts Lowell
- University of Massachusetts, Lowell
- Department of Physics and Applied Physics, University of Massachusetts, Lowell
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Realizing large, tunable dispersive shifts with parametric couplings – Part II
ORAL
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Presenters
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Taewan Noh
- National Institute of Standards and Technology Boulder
- University of Massachusetts Lowell
- National Institute of Standards and Technology
Authors
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Taewan Noh
- National Institute of Standards and Technology Boulder
- University of Massachusetts Lowell
- National Institute of Standards and Technology
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Zhihao Xiao
- University of Massachusetts Lowell
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Emery Doucet
- University of Massachusetts Lowell
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Leonardo Ranzani
- BBN Technology - Massachusetts
- Raytheon BBN Technologies
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Luke Govia
- Raytheon BBN Technologies
- BBN Technology - Massachusetts
- BBN Technologies
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Archana Kamal
- University of Massachusetts Lowell
- University of Massachusetts, Lowell
- Department of Physics and Applied Physics, University of Massachusetts, Lowell
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Jose Aumentado
- National Institute of Standards and Technology Boulder
- National Institute of Standards and Technology
- National Institute of Standards and Technology, Boulder, USA
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Raymond W Simmonds
- National Institute of Standards and Technology Boulder
- National Institute of Standards and Technology
- National Institute of Standards and Technology, Boulder, USA
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Continuous phase preserving measurement of a quantum N-level system
ORAL
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Presenters
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Debmalya Das
- University of Rochester
Authors
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Debmalya Das
- University of Rochester
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John Steinmetz
- University of Rochester
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Andrew N Jordan
- University of Rochester
- Department of Physics and Astronomy, University of Rochester
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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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Single-shot number-resolved detection of microwave photons with error mitigation
ORAL
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Presenters
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Jacob Curtis
- Yale University
Authors
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Jacob Curtis
- Yale University
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Connor Hann
- Yale University
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Salvatore Elder
- Yale University
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Christopher Wang
- Yale University
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Luigi Frunzio
- Applied Physics Department, Yale University
- Yale University
- Applied Physics, Yale University
- Department of Applied Physics and Physics, Yale University
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Liang Jiang
- University of Chicago
- Department of Molecular Engineering, The University of Chicago
- Pritzker School of Molecular Engineering, University of Chicago
- Yale University
- Pritzker school of molecular engineering, The University of Chicago
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Robert J Schoelkopf
- Yale University
- Applied Physics, Yale University
- Department of Applied Physics and Physics, Yale University
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Complete quantum tomography for QND detectors and generalization of QNDness.
ORAL
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Presenters
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Luciano Pereira
- Instituto de Física Fundamental IFF, CSIC
Authors
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Luciano Pereira
- Instituto de Física Fundamental IFF, CSIC
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Tomas Ramos
- Instituto de Física Fundamental (IFF-CSIC), Spain
- IFF, CSIC
- DAiTA LAb, Instituto de Física Fundamental, CSIC
- Instituto de Física Fundamental IFF, CSIC
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Juan Jose Garcia-Ripoll
- Instituto de Física Fundamental (IFF-CSIC), Spain
- Instituto de Fisica Fundamental
- IFF, CSIC
- DAiTA LAb, Instituto de Física Fundamental, CSIC
- Instituto de Física Fundamental IFF, CSIC
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Circuit optimization to improve transmon qubit readout via cross-Kerr coupling
ORAL
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Presenters
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Vladimir Milchakov
- Institut Neel
- Institut Néel, CNRS, University Grenoble Alpes
- Neel Institute, CNRS
Authors
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Vladimir Milchakov
- Institut Neel
- Institut Néel, CNRS, University Grenoble Alpes
- Neel Institute, CNRS
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Timothee Guerra
- Neel Institute, CNRS
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Remy Dassonneville
- ENS de Lyon
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Luca Planat
- Institut Neel
- Institut Néel, CNRS, University Grenoble Alpes
- Neel Institute, CNRS
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Tomas Ramos
- Instituto de Física Fundamental (IFF-CSIC), Spain
- IFF, CSIC
- DAiTA LAb, Instituto de Física Fundamental, CSIC
- Instituto de Física Fundamental IFF, CSIC
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Thibault Charpentier
- Neel Institute, CNRS
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Farshad Foroughi
- Neel Institute, CNRS
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Olivier Buisson
- Institut Neel
- Institut Néel, CNRS, University Grenoble Alpes
- Neel Institute, CNRS
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Nicolas Roch
- Institut Neel
- Institut Néel, CNRS, University Grenoble Alpes
- Neel Institute, CNRS
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Wiebke Guichard
- Neel Institute, CNRS
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Cécile Naud
- Institut Neel
- Institut Néel, CNRS, University Grenoble Alpes
- Neel Institute, CNRS
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Juan Jose Garcia-Ripoll
- Instituto de Física Fundamental (IFF-CSIC), Spain
- Instituto de Fisica Fundamental
- IFF, CSIC
- DAiTA LAb, Instituto de Física Fundamental, CSIC
- Instituto de Física Fundamental IFF, CSIC
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Fast high fidelity quantum non-demolition superconducting qubit readout
Invited
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Presenters
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Olivier Buisson
- Institut Neel
- Institut Néel, CNRS, University Grenoble Alpes
- Neel Institute, CNRS
Authors
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Remy Dassonneville
- Institut Néel, CNRS, University Grenoble Alpes
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Vladimir Milchakov
- Institut Neel
- Institut Néel, CNRS, University Grenoble Alpes
- Neel Institute, CNRS
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Tomas Ramos
- Instituto de Física Fundamental (IFF-CSIC), Spain
- IFF, CSIC
- DAiTA LAb, Instituto de Física Fundamental, CSIC
- Instituto de Física Fundamental IFF, CSIC
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Luca Planat
- Institut Neel
- Institut Néel, CNRS, University Grenoble Alpes
- Neel Institute, CNRS
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Cécile Naud
- Institut Neel
- Institut Néel, CNRS, University Grenoble Alpes
- Neel Institute, CNRS
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Juan Jose Garcia-Ripoll
- Instituto de Física Fundamental (IFF-CSIC), Spain
- Instituto de Fisica Fundamental
- IFF, CSIC
- DAiTA LAb, Instituto de Física Fundamental, CSIC
- Instituto de Física Fundamental IFF, CSIC
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Wiebke Hasch-Guichard
- Institut Néel, CNRS, University Grenoble Alpes
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Nicolas Roch
- Institut Neel
- Institut Néel, CNRS, University Grenoble Alpes
- Neel Institute, CNRS
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Olivier Buisson
- Institut Neel
- Institut Néel, CNRS, University Grenoble Alpes
- Neel Institute, CNRS
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Unconditional reset of a qubit readout resonator using multichannel driving
ORAL
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Presenters
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András Gunyhó
- QCD Labs, Department of Applied Physics, Aalto University
Authors
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András Gunyhó
- QCD Labs, Department of Applied Physics, Aalto University
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Suman Kundu
- QCD Labs, Department of Applied Physics, Aalto University
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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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Tianyi Li
- IQM Quantum Computers
- 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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Quantum reservoir computing using weakly-nonlinear Josephson junction networks under homodyne measurement
ORAL
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Presenters
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Saeed Khan
- Department of Electrical Engineering, Princeton University
- Princeton University
Authors
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Saeed Khan
- Department of Electrical Engineering, Princeton University
- Princeton University
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Gerasimos Angelatos
- Princeton University
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Hakan E Tureci
- Princeton University
- Department of Electrical Engineering, Princeton University
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A generalized figure of merit for qubit readout
ORAL
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Presenters
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Benjamin D'Anjou
- Univ Ulm
Authors
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Benjamin D'Anjou
- Univ Ulm
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Machine Learning Assisted Superconducting Qubit Readout – Part I: From Pulse Shaping to State Discrimination
ORAL
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Presenters
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Benjamin Lienhard
- Massachusetts Institute of Technology MIT
- Department of Electrical Engineering & Computer Science, Research Laboratory of Electronics, Massachusetts Institute of Technology
Authors
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Benjamin Lienhard
- Massachusetts Institute of Technology MIT
- Department of Electrical Engineering & Computer Science, Research Laboratory of Electronics, Massachusetts Institute of Technology
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Cole Hoffer
- Massachusetts Institute of Technology MIT
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Antti Vepsäläinen
- MIT Research Laboratory of Electronics
- Massachusetts Institute of Technology
- Massachusetts Institute of Technology MIT
- Research Laboratory of Electronics, Massachusetts Institute of Technology
- Aalto University
- Department of Electrical Engineering & Computer Science, Massachusetts Institute of Technology
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Luke Govia
- Raytheon BBN Technologies
- BBN Technology - Massachusetts
- BBN Technologies
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Yanjie Qiu
- Massachusetts Institute of Technology MIT
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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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Roni Winik
- MIT Research Laboratory of Electronics
- Massachusetts Institute of Technology MIT
- Massachusetts Institute of Technology
- Research Laboratory of Electronics, Massachusetts Institute of Technology
- MIT
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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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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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Thomas A Ohki
- Raytheon BBN Technologies
- BBN Technology - Massachusetts
- BBN Technologies
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Hari Krovi
- Raytheon BBN Technologies
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Terry Philip Orlando
- Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology MIT
- Massachusetts Institute of Technology MIT
- Massachusetts Institute of Technology
- Research Laboratory of Electronics, Massachusetts Institute of Technology
- MIT
- Research Laboratory of Electronics and Department of Electrical Engineering & Computer Science, Massachusetts Institute of Technology
- Department of Electrical Engineering & Computer Science, Research Laboratory of Electronics, Massachusetts Institute of Technology
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Simon Gustavsson
- Research Laboratory of Electronics, Massachusetts Institute of Technology
- MIT Research Laboratory of Electronics
- Massachusetts Institute of Technology MIT
- 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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Machine Learning Assisted Superconducting Qubit Readout – Part II: Deep Reinforcement Learning
ORAL
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Presenters
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Cole Hoffer
- Massachusetts Institute of Technology MIT
Authors
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Cole Hoffer
- Massachusetts Institute of Technology MIT
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Benjamin Lienhard
- Massachusetts Institute of Technology MIT
- Department of Electrical Engineering & Computer Science, Research Laboratory of Electronics, Massachusetts Institute of Technology
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Antti Vepsäläinen
- MIT Research Laboratory of Electronics
- Massachusetts Institute of Technology
- Massachusetts Institute of Technology MIT
- Research Laboratory of Electronics, Massachusetts Institute of Technology
- Aalto University
- Department of Electrical Engineering & Computer Science, Massachusetts Institute of Technology
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Luke Govia
- Raytheon BBN Technologies
- BBN Technology - Massachusetts
- BBN Technologies
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Vilhelm L Andersen Woltz
- Massachusetts Institute of Technology MIT
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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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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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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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Thomas A Ohki
- Raytheon BBN Technologies
- BBN Technology - Massachusetts
- BBN Technologies
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Hari Krovi
- Raytheon BBN Technologies
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Terry Philip Orlando
- Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology MIT
- Massachusetts Institute of Technology MIT
- Massachusetts Institute of Technology
- Research Laboratory of Electronics, Massachusetts Institute of Technology
- MIT
- Research Laboratory of Electronics and Department of Electrical Engineering & Computer Science, Massachusetts Institute of Technology
- Department of Electrical Engineering & Computer Science, Research Laboratory of Electronics, Massachusetts Institute of Technology
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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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