Fetching the paper…
Reading the bibliography…
Towards realising larger scale quantum algorithms, the ability to prepare sizeable multi-qubit entangled states with full qubit control is used as a benchmark for quantum technologies.
Can quantum-mechanical description of physical reality be considered complete?
Albert Einstein, Boris Podolsky, and Nathan Rosen · 1935
Earlier work this paper cites.
On the Einstein Podolsky Rosen paradox
John S Bell · 1964
Earlier work this paper cites.
Experimental test of Bell’s inequalities using time-varying analyzers
Alain Aspect, Jean Dalibard, and Gérard Roger · 1982
Earlier work this paper cites.
Bootstrap methods for standard errors, confidence intervals, and other measures of statistical accuracy
Bradley Efron and Robert Tibshirani · 1986
Earlier work this paper cites.
Quantum cryptography based on Bell’s theorem
Artur K Ekert · 1991
Earlier work this paper cites.
Communication via one-and two-particle operators on Einstein-Podolsky-Rosen states
Charles H Bennett and Stephen J Wiesner · 1992
Earlier work this paper cites.
Bell’s-inequality experiments using independent-particle sources
Bernard Yurke and David Stoler · 1992
Earlier work this paper cites.
Teleporting an unknown quantum state via dual classical and Einstein-Podolsky-Rosen channels
Charles H Bennett, Gilles Brassard, Claude Crépeau, Richard Jozsa, Asher Peres, and William K Wootters · 1993
Earlier work this paper cites.
“Event-ready-detectors” Bell experiment via entanglement swapping
Marek Żukowski, Anton Zeilinger, Michael A Horne, and Artur K Ekert · 1993
Earlier work this paper cites.
Separability of mixed states: necessary and sufficient conditions
M Horedecki, P Horodecki, and R Horodecki · 1996
Earlier work this paper cites.
Quantifying entanglement
Vlatko Vedral, Martin B Plenio, Michael A Rippin, and Peter L Knight · 1997
Earlier work this paper cites.
Quantum entanglement as a quantifiable resource
William K Wootters · 1998
Earlier work this paper cites.
Entanglement of formation of an arbitrary state of two qubits
William K Wootters · 1998
Earlier work this paper cites.
Entanglement monotones
Guifré Vidal · 2000
Earlier work this paper cites.
Bell inequalities and the separability criterion
Barbara M Terhal · 2000
Earlier work this paper cites.
A one-way quantum computer
Robert Raussendorf and Hans J Briegel · 2001
Earlier work this paper cites.
Persistent entanglement in arrays of interacting particles
Hans J Briegel and Robert Raussendorf · 2001
Cited alongside, same era.
Computable measure of entanglement
Guifré Vidal and Reinhard F Werner · 2002
Cited alongside, same era.
Quantum computation and quantum information, 2002
Michael A Nielsen and Isaac Chuang · 2002
Cited alongside, same era.
Efficient classical simulation of slightly entangled quantum computations
Guifré Vidal · 2003
Cited alongside, same era.
Renormalization algorithms for quantum-many body systems in two and higher dimensions
Frank Verstraete and J Ignacio Cirac · 2004
Cited alongside, same era.
Entanglement detection in the stabilizer formalism
Géza Tóth and Otfried Gühne · 2005
Cited alongside, same era.
Loophole-free Bell inequality violation using electron spins separated by 1.3 kilometres
Bas Hensen, Hannes Bernien, Anaïs E Dréau, Andreas Reiserer, Norbert Kalb, Machiel S Blok, Just Ruitenberg, Raymond FL Vermeulen, Raymond N Schouten, Carlos Abellán, et al · 2015
Later among the works it cites.
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
Later among the works it cites.
10-qubit entanglement and parallel logic operations with a superconducting circuit
Chao Song, Kai Xu, Wuxin Liu, Chui-ping Yang, Shi-Biao Zheng, Hui Deng, Qiwei Xie, Keqiang Huang, Qiujiang Guo, Libo Zhang, et al · 2017
Later among the works it cites.
16-qubit IBM universal quantum computer can be fully entangled
Yuanhao Wang, Ying Li, Zhang-qi Yin, and Bei Zeng · 2018
Later among the works it cites.
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
Later among the works it cites.
alphaXiv searches the wider corpus for related work and actual follow-ups.
alphaXiv is searching for related work…
Correcting quantum errors with entanglement
Todd Brun, Igor Devetak, and Min-Hsiu Hsieh · 2006
Cited alongside, same era.
The structure of bipartite quantum states-insights from group theory and cryptography
Matthias Christandl · 2006
Cited alongside, same era.
Beating the standard quantum limit with four-entangled photons
Tomohisa Nagata, Ryo Okamoto, Jeremy L O’brien, Keiji Sasaki, and Shigeki Takeuchi · 2007
Cited alongside, same era.
An introduction to entanglement measures
Martin B Plenio and Shashank Virmani · 2007
Cited alongside, same era.
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
Cited alongside, same era.
Quantum entanglement
Ryszard Horodecki, Paweł Horodecki, Michał Horodecki, and Karol Horodecki · 2009
Cited alongside, same era.
18-qubit entanglement with six photons’ three degrees of freedom
Xi-Lin Wang, Yi-Han Luo, He-Liang Huang, Ming-Cheng Chen, Zu-En Su, Chang Liu, Chao Chen, Wei Li, Yu-Qiang Fang, Xiao Jiang, et al · 2018
Later among the works it cites.
12-photon entanglement and scalable scattershot boson sampling with optimal entangled-photon pairs from parametric down-conversion
Han-Sen Zhong, Yuan Li, Wei Li, Li-Chao Peng, Zu-En Su, Yi Hu, Yu-Ming He, Xing Ding, Weijun Zhang, Hao Li, et al · 2018
Later among the works it cites.
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
Later among the works it cites.
Entanglement structure: entanglement partitioning in multipartite systems and its experimental detection using optimizable witnesses
He Lu, Qi Zhao, Zheng-Da Li, Xu-Fei Yin, Xiao Yuan, Jui-Chen Hung, Luo-Kan Chen, Li Li, Nai-Le Liu, Cheng-Zhi Peng, et al · 2018
Later among the works it cites.
Genuine 12-qubit entanglement on a superconducting quantum processor
Ming Gong, Ming-Cheng Chen, Yarui Zheng, Shiyu Wang, Chen Zha, Hui Deng, Zhiguang Yan, Hao Rong, Yulin Wu, Shaowei Li, Fusheng Chen, Youwei Zhao, Futian Liang, Jin Lin, Yu Xu, Cheng Guo, Lihua Sun, Anthony D. Castellano, Haohua Wang, Chengzhi Peng, Chao-Yang Lu, Xiaobo Zhu, and Jian-Wei Pan · 2019
Closest in time.
IBM makes quantum computing available on IBM cloud to accelerate innovation
IBM · 2019
Closest in time.
https://quantumexperience.ng.bluemix.net/qx/devices
IBM Q experience · 2019
Closest in time.
Observation of multi-component atomic Schrödinger cat states of up to 20 qubits
Chao Song, Kai Xu, Hekang Li, Yuran Zhang, Xu Zhang, Wuxin Liu, Qiujiang Guo, Zhen Wang, Wenhui Ren, Jie Hao, et al · 2019
Closest in time.
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
Closest in time.
Verifying multipartite entangled GHZ 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 · 2019
Closest in time.
Cramming more power into a quantum device
Jay Gambetta and Sarah Sheldon · 2019
Closest in time.