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Generating and detecting genuine multipartite entanglement (GME) of sizeable quantum states prepared on physical devices is an important benchmark for highlighting the progress of near-term quantum computers.
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Maciej Lewenstein, Barabara Kraus, J Ignacio Cirac, and Pawel Horodecki · 2000
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Barbara M Terhal · 2000
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Experimental demonstration of four-photon entanglement and high-fidelity teleportation
Jian-Wei Pan, Matthew Daniell, Sara Gasparoni, Gregor Weihs, and Anton Zeilinger · 2001
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Persistent entanglement in arrays of interacting particles
Hans J Briegel and Robert Raussendorf · 2001
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Efficient classical simulation of slightly entangled quantum computations
Guifré Vidal · 2003
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Renormalization algorithms for quantum-many body systems in two and higher dimensions
Frank Verstraete and J Ignacio Cirac · 2004
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Experimental demonstration of five-photon entanglement and open-destination teleportation
Zhi Zhao, Yu-Ao Chen, An-Ning Zhang, Tao Yang, Hans J Briegel, and Jian-Wei Pan · 2004
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Entanglement detection in the stabilizer formalism
Géza Tóth and Otfried Gühne · 2005
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Creation of a six-atom ‘Schrödinger cat’ state
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Charge-insensitive qubit design derived from the Cooper pair box
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Experimental entanglement of six photons in graph states
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Matrix product states, projected entangled pair states, and variational renormalization group methods for quantum spin systems
Frank Verstraete, Valentin Murg, and J Ignacio Cirac · 2008
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Generation of three-qubit entangled states using superconducting phase qubits
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Preparation and measurement of three-qubit entanglement in a superconducting circuit
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Experimental demonstration of a hyper-entangled ten-qubit Schrödinger cat state
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14-qubit entanglement: Creation and coherence
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16-qubit IBM universal quantum computer can be fully entangled
Yuanhao Wang, Ying Li, Zhang-qi Yin, and Bei Zeng · 2018
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Observation of entangled states of a fully controlled 20-qubit system
Nicolai Friis, Oliver Marty, Christine Maier, Cornelius Hempel, Milan Holzäpfel, Petar Jurcevic, Martin B Plenio, Marcus Huber, Christian Roos, Rainer Blatt, et al · 2018
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Experimental entanglement of 25 individually accessible atomic quantum interfaces
Yunfei Pu, Yukai Wu, Nan Jiang, Wei Chang, Chang Li, Sheng Zhang, and Luming Duan · 2018
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Exploring localization in nuclear spin chains
Ken Xuan Wei, Chandrasekhar Ramanathan, and Paola Cappellaro · 2018
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Validating quantum computers using randomized model circuits
Andrew W Cross, Lev S Bishop, Sarah Sheldon, Paul D Nation, and Jay M Gambetta · 2019
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Experimental generation of an eight-photon greenberger–horne–zeilinger state
Yun-Feng Huang, Bi-Heng Liu, Liang Peng, Yu-Hu Li, Li Li, Chuan-Feng Li, and Guang-Can Guo · 2011
Cited alongside, same era.
Observation of eight-photon entanglement
Xing-Can Yao, Tian-Xiong Wang, Ping Xu, He Lu, Ge-Sheng Pan, Xiao-Hui Bao, Cheng-Zhi Peng, Chao-Yang Lu, Yu-Ao Chen, and Jian-Wei Pan · 2012
Cited alongside, same era.
Efficient method for computing the maximum-likelihood quantum state from measurements with additive gaussian noise
John A Smolin, Jay M Gambetta, and Graeme Smith · 2012
Cited alongside, same era.
Superconducting quantum circuits at the surface code threshold for fault tolerance
Rami Barends, Julian Kelly, Anthony Megrant, Andrzej Veitia, Daniel Sank, Evan Jeffrey, Ted C White, Josh Mutus, Austin G Fowler, Brooks Campbell, et al · 2014
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Introduction to quantum gate set tomography
Daniel Greenbaum · 2015
Cited alongside, same era.
Experimental ten-photon entanglement
Xi-Lin Wang, Luo-Kan Chen, Wei Li, H-L Huang, Chang Liu, Chao Chen, Y-H Luo, Z-E Su, Dian Wu, Z-D Li, et al · 2016
Cited alongside, same era.
Quantum fault tolerance in small experiments
Daniel Gottesman · 2016
Cited alongside, same era.
Ming Gong, Ming-Cheng Chen, Yarui Zheng, Shiyu Wang, Chen Zha, Hui Deng, Zhiguang Yan, Hao Rong, Yulin Wu, Shaowei Li, et al · 2019
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Generation of multicomponent atomic Schrödinger cat states of up to 20 qubits
Chao Song, Kai Xu, Hekang Li, Yu-Ran Zhang, Xu Zhang, Wuxin Liu, Qiujiang Guo, Zhen Wang, Wenhui Ren, Jie Hao, et al · 2019
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Generation and manipulation of Schrödinger cat states in Rydberg atom arrays
Ahmed Omran, Harry Levine, Alexander Keesling, Giulia Semeghini, Tout T Wang, Sepehr Ebadi, Hannes Bernien, Alexander S Zibrov, Hannes Pichler, Soonwon Choi, et al · 2019
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Entanglement in a 20-qubit superconducting quantum computer
Gary J Mooney, Charles D Hill, and Lloyd CL Hollenberg · 2019
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Demonstration of quantum volume 64 on a superconducting quantum computing system
Petar Jurcevic, Ali Javadi-Abhari, Lev S Bishop, Isaac Lauer, Daniela F Bogorin, Markus Brink, Lauren Capelluto, Oktay Günlük, Toshinaro Itoko, Naoki Kanazawa, et al · 2020
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Mitigation of readout noise in near-term quantum devices by classical post-processing based on detector tomography
Filip B Maciejewski, Zoltán Zimborás, and Michał Oszmaniec · 2020
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Verifying multipartite entangled Greenberger-Horne-Zeilinger states via multiple quantum coherences
Ken X Wei, Isaac Lauer, Srikanth Srinivasan, Neereja Sundaresan, Douglas T McClure, David Toyli, David C McKay, Jay M Gambetta, and Sarah Sheldon · 2020
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Probing quantum processor performance with pyGSTi
Erik Nielsen, Kenneth Rudinger, Timothy Proctor, Antonio Russo, Kevin Young, and Robin Blume-Kohout · 2020
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Rigorous measurement error correction
Michael R Geller · 2020
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Towards efficient correction of multiqubit measurement errors: Pair correlation method
Michael R Geller and Mingyu Sun · 2020
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Compact ion-trap quantum computing demonstrator
Ivan Pogorelov, Thomas Feldker, Christian D Marciniak, Georg Jacob, Verena Podlesnic, Michael Meth, Vlad Negnevitsky, Martin Stadler, Kirill Lakhmanskiy, Rainer Blatt, et al · 2021
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Quantum tomography of an entangled three-spin state in silicon
Kenta Takeda, Akito Noiri, Takashi Nakajima, Jun Yoneda, Takashi Kobayashi, and Seigo Tarucha · 2021
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Performance optimization for drift-robust fidelity improvement of two-qubit gates
Gregory AL White, Charles D Hill, and Lloyd CL Hollenberg · 2021
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