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Crosstalk is a major source of noise in Noisy Intermediate-Scale Quantum (NISQ) systems and is a fundamental challenge for hardware design.
Polynomial-time algorithms for prime factorization and discrete logarithms on a quantum computer
P. Shor · 1999
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Scheduling physical operations in a quantum information processor
Tzvetan S. Metodi, Darshan D. Thaker, Andrew W. Cross, Frederic T. Chong, and Isaac L. Chuang · 2006
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Quantum algorithm for a generalized hidden shift problem
Andrew M. Childs and Wim Van Dam · 2007
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Z3: An Efficient SMT Solver
Leonardo de Moura and Nikolaj Bjørner · 2008
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Randomized benchmarking of quantum gates
E. Knill, D. Leibfried, R. Reichle, J. Britton, R. B. Blakestad, J. D. Jost, C. Langer, R. Ozeri, S. Seidelin, and D. J. Wineland · 2008
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Quantum circuit simplification and level compaction
Dmitri Maslov, Gerhard W Dueck, D Michael Miller, and Camille Negrevergne · 2008
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Quantum circuit placement
Dmitri Maslov, Sean M Falconer, and Michele Mosca · 2008
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Fully microwave-tunable universal gates in superconducting qubits with linear couplings and fixed transition frequencies
Chad Rigetti and Michel Devoret · 2010
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Simple all-microwave entangling gate for fixed-frequency superconducting qubits
Jerry M. Chow, A. D. Córcoles, Jay M. Gambetta, Chad Rigetti, B. R. Johnson, John A. Smolin, J. R. Rozen, George A. Keefe, Mary B. Rothwell, Mark B. Ketchen, and M. Steffen · 2011
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Scalable and robust randomized benchmarking of quantum processes
Easwar Magesan, J. M. Gambetta, and Joseph Emerson · 2011
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Characterization of addressability by simultaneous randomized benchmarking
Jay M. Gambetta, A. D. Córcoles, S. T. Merkel, B. R. Johnson, John A. Smolin, Jerry M. Chow, Colm A. Ryan, Chad Rigetti, S. Poletto, Thomas A. Ohki, Mark B. Ketchen, and M. Steffen · 2012
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Characterizing quantum gates via randomized benchmarking
Easwar Magesan, Jay M. Gambetta, and Joseph Emerson · 2012
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Quantum algorithms for supervised and unsupervised machine learning
Seth Lloyd, Masoud Mohseni, and Patrick Rebentrost · 2013
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A variational eigenvalue solver on a photonic quantum processor
Alberto Peruzzo, Jarrod McClean, Peter Shadbolt, Man-Hong Yung, Xiao-Qi Zhou, Peter J. Love, Alán Aspuru-Guzik, and Jeremy L. O’Brien · 2014
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ν \nu Z - An Optimizing SMT Solver
Nikolaj Bjørner, Anh-Dung Phan, and Lars Fleckenstein · 2015
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High-fidelity spatial and polarization addressing of ca-43 qubits using near-field microwave control
D. P. L. Aude Craik, N. M. Linke, M. A. Sepiol, T. P. Harty, J. F. Goodwin, C. J. Ballance, D. N. Stacey, A. M. Steane, D. M. Lucas, and D. T. C. Allcock · 2016
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Procedure for systematically tuning up cross-talk in the cross-resonance gate
Sarah Sheldon, Easwar Magesan, Jerry M. Chow, and Jay M. Gambetta · 2016
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A Practical Quantum Instruction Set Architecture
Robert S. Smith, Michael J. Curtis, and William J. Zeng · 2016
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Quantum machine learning
Jacob Biamonte, Peter Wittek, Nicola Pancotti, Patrick Rebentrost, Nathan Wiebe, and Seth Lloyd · 2017
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Open quantum assembly language
Andrew W. Cross, Lev S. Bishop, John A. Smolin, and Jay M. Gambetta · 2017
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Two-step approach to scheduling quantum circuits
Gian Giacomo Guerreschi and Jongsoo Park · 2017
Cited alongside, same era.
Hardware-efficient variational quantum eigensolver for small molecules and quantum magnets
Abhinav Kandala, Antonio Mezzacapo, Kristan Temme, Maika Takita, Markus Brink, Jerry M. Chow, and Jay M. Gambetta · 2017
Cited alongside, same era.
Basic circuit compilation techniques for an ion-trap quantum machine
Dmitri Maslov · 2017
Cited alongside, same era.
Efficient Z gates for quantum computing
David C. McKay, Christopher J. Wood, Sarah Sheldon, Jerry M. Chow, and Jay M. Gambetta · 2017
Cited alongside, same era.
On the controlled-not complexity of controlled-not–phase circuits
Matthew Amy, Parsiad Azimzadeh, and Michele Mosca · 2018
Cited alongside, same era.
Characterizing quantum supremacy in near-term devices
Qubit allocation
Marcos Yukio Siraichi, Vinícius Fernandes dos Santos, Sylvain Collange, and Fernando Magno Quintao Pereira · 2018
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Compiling quantum circuits to realistic hardware architectures using temporal planners
Davide Venturelli, Minh Do, Eleanor Rieffel, and Jeremy Frank · 2018
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Topological and subsystem codes on low-degree graphs with flag qubits, 2019
Christopher Chamberland, Guanyu Zhu, Theodore J. Yoder, Jared B. Hertzberg, and Andrew W. Cross · 2019
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Circuit transformations for quantum architectures
Andrew M Childs, Eddie Schoute, and Cem M Unsal · 2019
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Graph-theoretic simplification of quantum circuits with the zx-calculus
Ross Duncan, Aleks Kissinger, Simon Pedrix, and John van de Wetering · 2019
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Sergio Boixo, Sergei V Isakov, Vadim N Smelyanskiy, Ryan Babbush, Nan Ding, Zhang Jiang, Michael J Bremner, John M Martinis, and Hartmut Neven · 2018
Cited alongside, same era.
Comparing and integrating constraint programming and temporal planning for quantum circuit compilation
Kyle EC Booth, Minh Do, J Christopher Beck, Eleanor Rieffel, Davide Venturelli, and Jeremy Frank · 2018
Cited alongside, same era.
Device challenges for near term superconducting quantum processors: frequency collisions
M. Brink, J. M. Chow, J. Hertzberg, E. Magesan, and S. Rosenblatt · 2018
Cited alongside, same era.
A Preview of Bristlecone, Google’s New Quantum Processor
Google · 2018
Cited alongside, same era.
IBM Announces Advances to IBM Quantum Systems and Ecosystem
IBM · 2018
Cited alongside, same era.
IBM Quantum Devices
IBM · 2018
Cited alongside, same era.
CES 2018: Intel’s 49-Qubit Chip Shoots for Quantum Supremacy
Intel · 2018
Cited alongside, same era.
Efficient learning of quantum noise, 2019
Robin Harper, Steven T. Flammia, and Joel J. Wallman · 2019
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Qiskit Terra
IBM · 2019
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Qiskit Ignis
IBM · 2019
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Readout Error Mitigation in Qiskit Ignis
IBM · 2019
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Quantum circuit compilers using gate commutation rules
Toshinari Itoko, Rudy Raymond, Takashi Imamichi, Atsushi Matsuo, and Andrew W. Cross · 2019
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A quantum engineer’s guide to superconducting qubits
P. Krantz, M. Kjaergaard, F. Yan, T. P. Orlando, S. Gustavsson, and W. D. Oliver · 2019
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Microwave packaging for superconducting qubits
B. Lienhard, J. Braumuller, W. Woods, D. Rosenberg, G. Calusine, S. Weber, A. Vepsalainen, K. O’Brien, T. P. Orlando, S. Gustavsson, and W. D. Oliver · 2019
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Noise-Adaptive Compiler Mappings for Noisy Intermediate-Scale Quantum Computers
Prakash Murali, Jonathan Baker, Ali Javadi-Abhari, Fred Chong, and Margaret Martonosi · 2019
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Full-stack, real-system quantum computer studies: Architectural comparisons and design insights
Prakash Murali, Norbert Matthias Linke, Margaret Martonosi, Ali Javadi-Abhari, Nhung Hong Nguyen, and Cinthia Huerta Alderete · 2019
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Extracting success from ibm’s 20-qubit machines using error-aware compilation
Shin Nishio, Yulu Pan, Takahiko Satoh, Hideharu Amano, and Rodney Van Meter · 2019
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Probing context-dependent errors in quantum processors
Kenneth Rudinger, Timothy Proctor, Dylan Langharst, Mohan Sarovar, Kevin Young, and Robin Blume-Kohout · 2019
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Not All Qubits Are Created Equal: A Case for Variability-Aware Policies for NISQ-Era Quantum Computers
Swamit S. Tannu and Moinuddin K. Qureshi · 2019
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Mapping Quantum Circuits to IBM QX Architectures Using the Minimal Number of SWAP and H Operations
Robert Wille, Lukas Burgholzer, and Alwin Zulehner · 2019
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Compiling SU (4) quantum circuits to IBM QX architectures
Alwin Zulehner and Robert Wille · 2019
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