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Entanglement is an important evidence that a quantum device can potentially solve problems intractable for classical computers.
Quantum states with einstein-podolsky-rosen correlations admitting a hidden-variable model
Werner, R. F · 1989
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Separability criterion for density matrices
Peres, A · 1996
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Separability of mixed states: necessary and sufficient conditions
Horodecki, M., Horodecki, P. & Horodecki, R · 1996
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Persistent entanglement in arrays of interacting particles
Briegel, H. J. & Raussendorf, R · 2001
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A one-way quantum computer
Raussendorf, R. & Briegel, H. J · 2001
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Quantum computation and quantum information (2002)
Nielsen, M. A. & Chuang, I · 2002
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Distinguishing separable and entangled states
Doherty, A. C., Parrilo, P. A. & Spedalieri, F. M · 2002
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Multiparty entanglement in graph states
Hein, M., Eisert, J. & Briegel, H. J · 2004
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Entanglement properties of multipartite entangled states under the influence of decoherence
Hein, M., Dür, W. & Briegel, H.-J · 2005
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Localizable entanglement
Popp, M., Verstraete, F., Martín-Delgado, M. A. & Cirac, J. I · 2005
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Fault-tolerant quantum computation with cluster states
Nielsen, M. A. & Dawson, C. M · 2005
Cited alongside, same era.
Entanglement in Graph States and its Applications (2006)
Hein, M. et al · 2006
Cited alongside, same era.
A fault-tolerant one-way quantum computer
Raussendorf, R., Harrington, J. & Goyal, K · 2006
Cited alongside, same era.
Fault-tolerant quantum computation with high threshold in two dimensions
Raussendorf, R. & Harrington, J · 2007
Cited alongside, same era.
Quantum entanglement
Horodecki, R., Horodecki, P., Horodecki, M. & Horodecki, K · 2009
Cited alongside, same era.
Quantum computing and the entanglement frontier
Preskill, J · 2012
Cited alongside, same era.
Entropic uncertainty and measurement reversibility
Berta, M., Wehner, S. & Wilde, M. M · 2016
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https://quantumexperience.ng.bluemix.net/qx/devices
Ibm q experience · 2017
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Simple procedure for phase-space measurement and entanglement validation
Rundle, R. P., Mills, P. W., Tilma, T., Samson, J. H. & Everitt, M. J · 2017
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Violation of noninvasive macrorealism by a superconducting qubit: Implementation of a leggett-garg test that addresses the clumsiness loophole
Huffman, E. & Mizel, A · 2017
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Compressed quantum computation using a remote five-qubit quantum computer
Hebenstreit, M., Alsina, D., Latorre, J. I. & Kraus, B · 2017
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10-qubit entanglement and parallel logic operations with a superconducting circuit
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Efficient method for computing the maximum-likelihood quantum state from measurements with additive gaussian noise
Smolin, J. A., Gambetta, J. M. & Smith, G · 2012
Cited alongside, same era.
Superconducting quantum circuits at the surface code threshold for fault tolerance
Barends, R. et al · 2014
Cited alongside, same era.
Experimental test of mermin inequalities on a five-qubit quantum computer
Alsina, D. & Latorre, J. I · 2016
Cited alongside, same era.
Performing quantum computing experiments in the cloud
Devitt, S. J · 2016
Cited alongside, same era.
Song, C. et al · 2017
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https://github.com/QISKit/ibmqx-backend-information/tree/master/backends/ibmqx5
The ibm q experience ibmqx5 backend · 2017
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Observation of entangled states of a fully controlled 20-qubit system
Friis, N. et al · 2018
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Demonstration of Envariance and Parity Learning on the IBM 16 Qubit Processor
Ferrari, D. & Amoretti, M · 2018
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16-qubit ibm quantum processor entanglement (2018)
Wang, Y., Li, Y., Yin, Z. & Zeng, B · 2018
Closest in time.