Fetching the paper…
Reading the bibliography…
Reading a qubit is a fundamental operation in quantum computing.
An introduction to matched filters
George Turin. 1960 · 1960
Earlier work this paper cites.
Pattern Recognition and Machine Learning (1 ed.)
Christopher M. 2006 · 2006
Earlier work this paper cites.
Protocols for optimal readout of qubits using a continuous quantum nondemolition measurement
Jay Gambetta, WA Braff, A Wallraff, SM Girvin, and RJ Schoelkopf. 2007 · 2007
Earlier work this paper cites.
Role of relaxation in the quantum measurement of a superconducting qubit using a nonlinear oscillator
Thomas Picot, A Lupaşcu, S Saito, CJPM Harmans, and JE Mooij. 2008 · 2008
Earlier work this paper cites.
High-threshold universal quantum computation on the surface code
Austin G Fowler, Ashley M Stephens, and Peter Groszkowski. 2009 · 2009
Earlier work this paper cites.
Multiplexed dispersive readout of superconducting phase qubits
Yu Chen, D. Sank, P. O'Malley, T. White, R. Barends, B. Chiaro, J. Kelly, E. Lucero, M. Mariantoni, A. Megrant, C. Neill, A. Vainsencher, J. Wenner, Y. Yin, A. N. Cleland, and John M. Martinis. 2012 · 2012
Earlier work this paper cites.
A near–quantum-limited Josephson traveling-wave parametric amplifier
C. Macklin, K. O’Brien, D. Hover, M. E. Schwartz, V. Bolkhovsky, X. Zhang, W. D. Oliver, and I. Siddiqi. 2015 · 2015
Earlier work this paper cites.
Machine Learning for Discriminating Quantum Measurement Trajectories and Improving Readout
Easwar Magesan, Jay M. Gambetta, A. D. Córcoles, and Jerry M. Chow. 2015 · 2015
Earlier work this paper cites.
Tomography via correlation of noisy measurement records
Colm A Ryan, Blake R Johnson, Jay M Gambetta, Jerry M Chow, Marcus P Da Silva, Oliver E Dial, and Thomas A Ohki. 2015 · 2015
Earlier work this paper cites.
Quantum theory of a bandpass Purcell filter for qubit readout
Eyob A. Sete, John M. Martinis, and Alexander N. Korotkov. 2015 · 2015
Earlier work this paper cites.
From high-level deep neural models to FPGAs. In 2016 49th Annual IEEE/ACM International Symposium on Microarchitecture (MICRO) . IEEE, 1–12
Hardik Sharma, Jongse Park, Divya Mahajan, Emmanuel Amaro, Joon Kyung Kim, Chenkai Shao, Asit Mishra, and Hadi Esmaeilzadeh. 2016 · 2016
Earlier work this paper cites.
DeepBurning. In Proceedings of the 53rd Annual Design Automation Conference . ACM
Ying Wang, Jie Xu, Yinhe Han, Huawei Li, and Xiaowei Li. 2016 · 2016
Earlier work this paper cites.
Fast, high-fidelity readout of multiple qubits
N T Bronn, B Abdo, K Inoue, S Lekuch, A D Córcoles, J B Hertzberg, M Takita, L S Bishop, J M Gambetta, and J M Chow. 2017 · 2017
Earlier work this paper cites.
CirCNN: Accelerating and Compressing Deep Neural Networks Using Block-Circulant Weight Matrices. In Proceedings of the 50th Annual IEEE/ACM International Symposium on Microarchitecture (Cambridge, Massachusetts) (MICRO-50 ’17) . Association for Computing Machinery, New York, NY, USA, 395–408
Caiwen Ding, Siyu Liao, Yanzhi Wang, Zhe Li, Ning Liu, Youwei Zhuo, Chao Wang, Xuehai Qian, Yu Bai, Geng Yuan, Xiaolong Ma, Yipeng Zhang, Jian Tang, Qinru Qiu, Xue Lin, and Bo Yuan. 2017 · 2017
Earlier work this paper cites.
Optimizing Loop Operation and Dataflow in FPGA Acceleration of Deep Convolutional Neural Networks. In Proceedings of the 2017 ACM/SIGDA International Symposium on Field-Programmable Gate Arrays . ACM
Yufei Ma, Yu Cao, Sarma Vrudhula, and Jae sun Seo. 2017 · 2017
Earlier work this paper cites.
Maximizing CNN Accelerator Efficiency Through Resource Partitioning. In Proceedings of the 44th Annual International Symposium on Computer Architecture . ACM
Yongming Shen, Michael Ferdman, and Peter Milder. 2017 · 2017
Earlier work this paper cites.
Scalable quantum circuit and control for a superconducting surface code
Richard Versluis, Stefano Poletto, Nader Khammassi, Brian Tarasinski, Nadia Haider, David J Michalak, Alessandro Bruno, Koen Bertels, and Leonardo DiCarlo. 2017 · 2017
Earlier work this paper cites.
Rapid High-Fidelity Single-Shot Dispersive Readout of Superconducting Qubits
T. Walter, P. Kurpiers, S. Gasparinetti, P. Magnard, A. Potočnik, Y. Salathé, M. Pechal, M. Mondal, M. Oppliger, C. Eichler, and A. Wallraff. 2017 · 2017
Earlier work this paper cites.
A Configurable Cloud-Scale DNN Processor for Real-Time AI. In 2018 ACM/IEEE 45th Annual International Symposium on Computer Architecture (ISCA) . IEEE
Jeremy Fowers, Kalin Ovtcharov, Michael Papamichael, Todd Massengill, Ming Liu, Daniel Lo, Shlomi Alkalay, Michael Haselman, Logan Adams, Mahdi Ghandi, Stephen Heil, Prerak Patel, Adam Sapek, Gabriel Weisz, Lisa Woods, Sitaram Lanka, Steven K. Reinhardt, Adrian M. Caulfield, Eric S. Chung, and Doug Burger. 2018 · 2018
Earlier work this paper cites.
Rapid High-fidelity Multiplexed Readout of Superconducting Qubits
Johannes Heinsoo, Christian Kraglund Andersen, Ants Remm, Sebastian Krinner, Theodore Walter, Yves Salathé, Simone Gasparinetti, Jean-Claude Besse, Anton Potočnik, Andreas Wallraff, and Christopher Eichler. 2018 · 2018
Cited alongside, same era.
A blueprint for demonstrating quantum supremacy with superconducting qubits
C. Neill, P. Roushan, K. Kechedzhi, S. Boixo, S. V. Isakov, V. Smelyanskiy, A. Megrant, B. Chiaro, A. Dunsworth, K. Arya, R. Barends, B. Burkett, Y. Chen, Z. Chen, A. Fowler, B. Foxen, M. Giustina, R. Graff, E. Jeffrey, T. Huang, J. Kelly, P. Klimov, E. Lucero, J. Mutus, M. Neeley, C. Quintana, D. Sank, A. Vainsencher, J. Wenner, T. C. White, H. Neven, and J. M. Martinis. 2018 · 2018
Cited alongside, same era.
Low-latency digital signal processing for feedback and feedforward in quantum computing and communication
Yves Salathé, Philipp Kurpiers, Thomas Karg, Christian Lang, Christian Kraglund Andersen, Abdulkadir Akin, Sebastian Krinner, Christopher Eichler, and Andreas Wallraff. 2018 · 2018
Cited alongside, same era.
Quantum supremacy using a programmable superconducting processor
Frank Arute, Kunal Arya, Ryan Babbush, Dave Bacon, Joseph C. Bardin, Rami Barends, Rupak Biswas, Sergio Boixo, Fernando G. S. L. Brandao, David A. Buell, Brian Burkett, Yu Chen, Zijun Chen, Ben Chiaro, Roberto Collins, William Courtney, Andrew Dunsworth, Edward Farhi, Brooks Foxen, Austin Fowler, Craig Gidney, Marissa Giustina, Rob Graff, Keith Guerin, Steve Habegger, Matthew P. Harrigan, Michael J. Hartmann, Alan Ho, Markus Hoffmann, Trent Huang, Travis S. Humble, Sergei V. Isakov, Evan Jeffrey, Zhang Jiang, Dvir Kafri, Kostyantyn Kechedzhi, Julian Kelly, Paul V. Klimov, Sergey Knysh, Alexander Korotkov, Fedor Kostritsa, David Landhuis, Mike Lindmark, Erik Lucero, Dmitry Lyakh, Salvatore Mandrà, Jarrod R. McClean, Matthew McEwen, Anthony Megrant, Xiao Mi, Kristel Michielsen, Masoud Mohseni, Josh Mutus, Ofer Naaman, Matthew Neeley, Charles Neill, Murphy Yuezhen Niu, Eric Ostby, Andre Petukhov, John C. Platt, Chris Quintana, Eleanor G. Rieffel, Pedram Roushan, Nicholas C. Rubin, Daniel Sank, Kevin J. Satzinger, Vadim Smelyanskiy, Kevin J. Sung, Matthew D. Trevithick, Amit Vainsencher, Benjamin Villalonga, Theodore White, Z. Jamie Yao, Ping Yeh, Adam Zalcman, Hartmut Neven, and John M. Martinis. 2019 · 2019
QubiC: An Open-Source FPGA-Based Control and Measurement System for Superconducting Quantum Information Processors
Yilun Xu, Gang Huang, Jan Balewski, Ravi Naik, Alexis Morvan, Bradley Mitchell, Kasra Nowrouzi, David I. Santiago, and Irfan Siddiqi. 2021 · 2021
Later among the works it cites.
Driving quantum performance: more qubits, higher Quantum Volume, and now a proper measure of speed
CLOPS 2022 · 2022
Closest in time.
Measurement error mitigation in quantum computers through classical bit-flip correction
Lena Funcke, Tobias Hartung, Karl Jansen, Stefan Kühn, Paolo Stornati, and Xiaoyang Wang. 2022 · 2022
Closest in time.
Low-latency readout electronics for dynamic superconducting quantum computing
Cheng Guo, Jin Lin, Lian-Chen Han, Na Li, Li-Hua Sun, Fu-Tian Liang, Dong-Dong Li, Yu-Huai Li, Ming Gong, Yu Xu, Sheng-Kai Liao, and Cheng-Zhi Peng. 2022 · 2022
Closest in time.
Active readout-error mitigation
Rebecca Hicks, Bryce Kobrin, Christian W. Bauer, and Benjamin Nachman. 2022 · 2022
Closest in time.
alphaXiv searches the wider corpus for related work and actual follow-ups.
alphaXiv is searching for related work…
Cited alongside, same era.
A quantum engineer's guide to superconducting qubits
P. Krantz, M. Kjaergaard, F. Yan, T. P. Orlando, S. Gustavsson, and W. D. Oliver. 2019 · 2019
Cited alongside, same era.
Mitigating measurement errors in quantum computers by exploiting state-dependent bias. In Proceedings of the 52nd Annual IEEE/ACM International Symposium on Microarchitecture . 279–290
Swamit S Tannu and Moinuddin K Qureshi. 2019 · 2019
Cited alongside, same era.
Randomized compiling for scalable quantum computing on a noisy superconducting quantum processor
Akel Hashim, Ravi K Naik, Alexis Morvan, Jean-Loup Ville, Bradley Mitchell, John Mark Kreikebaum, Marc Davis, Ethan Smith, Costin Iancu, Kevin P O’Brien, et al · 2020
Cited alongside, same era.
The snake optimizer for learning quantum processor control parameters
Paul V Klimov, Julian Kelly, John M Martinis, and Hartmut Neven. 2020 · 2020
Cited alongside, same era.
DisQ: A Novel Quantum Output State Classification Method on IBM Quantum Computers Using Openpulse. In Proceedings of the 39th International Conference on Computer-Aided Design (Virtual Event, USA) (ICCAD ’20) . Association for Computing Machinery, New York, NY, USA, Article 139, 9 pages
Tirthak Patel and Devesh Tiwari. 2020 · 2020
Cited alongside, same era.
Real-time processing of stabilizer measurements in a bit-flip code
Diego Ristè, Luke C. G. Govia, Brian Donovan, Spencer D. Fallek, William D. Kalfus, Markus Brink, Nicholas T. Bronn, and Thomas A. Ohki. 2020 · 2020
Cited alongside, same era.
Using classical bit-flip correction for error mitigation including 2-qubit correlations
Constantia Alexandrou, Lena Funcke, Tobias Hartung, Karl Jansen, Stefan Kuehn, Georgios Polykratis, Paolo Stornati, and Xiaoyang Wang. 2021 · 2021
Cited alongside, same era.
Mitigating measurement errors in multiqubit experiments
Sergey Bravyi, Sarah Sheldon, Abhinav Kandala, David C. Mckay, and Jay M. Gambetta. 2021 · 2021
Cited alongside, same era.
Fei Hua, Yuwei Jin, Yanhao Chen, John Lapeyre, Ali Javadi-Abhari, and Eddy Z Zhang. 2022 · 2022
Closest in time.
IBM Readout Error Mitigation
IBM REM 2022 · 2022
Closest in time.
IBM Quantum Services
IBM Systems 2022 · 2022
Closest in time.
Quantum readout error mitigation via deep learning
Jihye Kim, Byungdu Oh, Yonuk Chong, Euyheon Hwang, and Daniel K Park. 2022 · 2022
Closest in time.
Deep-Neural-Network Discrimination of Multiplexed Superconducting-Qubit States
Benjamin Lienhard, Antti Vepsäläinen, Luke C.G. Govia, Cole R. Hoffer, Jack Y. Qiu, Diego Ristè, Matthew Ware, David Kim, Roni Winik, Alexander Melville, Bethany Niedzielski, Jonilyn Yoder, Guilhem J. Ribeill, Thomas A. Ohki, Hari K. Krovi, Terry P. Orlando, Simon Gustavsson, and William D. Oliver. 2022 · 2022
Closest in time.
IBM Quantum Services Resources
Selectable Discriminators 2022 · 2022
Closest in time.
The QICK (Quantum Instrumentation Control Kit): Readout and control for qubits and detectors
Leandro Stefanazzi, Kenneth Treptow, Neal Wilcer, Chris Stoughton, Collin Bradford, Sho Uemura, Silvia Zorzetti, Salvatore Montella, Gustavo Cancelo, Sara Sussman, et al · 2022
Closest in time.
FILM-QNN: Efficient FPGA Acceleration of Deep Neural Networks with Intra-Layer, Mixed-Precision Quantization. In Proceedings of the 2022 ACM/SIGDA International Symposium on Field-Programmable Gate Arrays . ACM
Mengshu Sun, Zhengang Li, Alec Lu, Yanyu Li, Sung-En Chang, Xiaolong Ma, Xue Lin, and Zhenman Fang. 2022 · 2022
Closest in time.
Fast Readout and Reset of a Superconducting Qubit Coupled to a Resonator with an Intrinsic Purcell Filter
Y. Sunada, S. Kono, J. Ilves, S. Tamate, T. Sugiyama, Y. Tabuchi, and Y. Nakamura. 2022 · 2022
Closest in time.
Measurement and control of a superconducting quantum processor with a fully-integrated radio-frequency system on a chip
Mats O. Tholén, Riccardo Borgani, Giuseppe Ruggero Di Carlo, Andreas Bengtsson, Christian Križan, Marina Kudra, Giovanna Tancredi, Jonas Bylander, Per Delsing, Simone Gasparinetti, and David B. Haviland. 2022 · 2022
Closest in time.
Google Weber
Weber Datasheet 2022 · 2022
Closest in time.
Qiskit: An Open-source Framework for Quantum Computing
Qiskit contributors. 2023 · 2023
Closest in time.
Better Than Worst-Case Decoding for Quantum Error Correction. In Proceedings of the 28th ACM International Conference on Architectural Support for Programming Languages and Operating Systems, Volume 2 . ACM
Gokul Subramanian Ravi, Jonathan M. Baker, Arash Fayyazi, Sophia Fuhui Lin, Ali Javadi-Abhari, Massoud Pedram, and Frederic T. Chong. 2023 · 2023
Closest in time.