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Cooper pair splitters are promising candidates for generating spin-entangled electrons.
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2005
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2007
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2008
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2008
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L. Hofstetter, S. Csonka, J. Nygård, and C. Schönenberger, “Cooper pair splitter realized in a two-quantum-dot Y-junction,” Nature 461
2009
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L. G. Herrmann, F. Portier, P. Roche, A. Levy Yeyati, T. Kontos, and C. Strunk, “Carbon Nanotubes as Cooper-Pair Beam Splitters,” Phys. Rev. Lett. 104
2010
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T. Jullien, P. Roulleau, B. Roche, A. Cavanna, Y. Jin, and D. C. Glattli, “Quantum tomography of an electron,” Nature 514
2014
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L. Fricke, M. Wulf, B. Kaestner, F. Hohls, P. Mirovsky, B. Mackrodt, R. Dolata, T. Weimann, K. Pierz, U. Siegner, and H. W. Schumacher, “Self-Referenced Single-Electron Quantized Current Source,” Phys. Rev. Lett. 112
2014
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O. Malkoc, C. Bergenfeldt, and P. Samuelsson, “Full counting statistics of generic spin entangler with quantum dot-ferromagnet detectors,” EPL 105
2014
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Z. B. Tan, D. Cox, T. Nieminen, P. Lähteenmäki, D. Golubev, G. B. Lesovik, and P. J. Hakonen, “Cooper Pair Splitting by Means of Graphene Quantum Dots,” Phys. Rev. Lett. 114
2015
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J. Wei and V. Chandrasekhar, “Positive noise cross-correlation in hybrid superconducting and normal-metal three-terminal devices,” Nat. Phys. 6
2010
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J. Eldridge, M. G. Pala, M. Governale, and J. König, “Superconducting proximity effect in interacting double-dot systems,” Phys. Rev. B 82
2010
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M. Albert, C. Flindt, and M. Büttiker, “Accuracy of the quantum capacitor as a single-electron source,” Phys. Rev. B 82
2010
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C. Flindt, T. Novotný, A. Braggio, and A.-P. Jauho, “Counting statistics of transport through Coulomb blockade nanostructures: High-order cumulants and non-Markovian effects,” Phys. Rev. B 82
2010
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L. Hofstetter, S. Csonka, A. Baumgartner, G. Fülöp, S. d’Hollosy, J. Nygård, and C. Schönenberger, “Finite-Bias Cooper Pair Splitting,” Phys. Rev. Lett. 107
2011
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B. Hiltscher, M. Governale, J. Splettstoesser, and J. König, “Adiabatic pumping in a double-dot Cooper-pair beam splitter,” Phys. Rev. B 84
2011
Cited alongside, same era.
M. Albert, C. Flindt, and M. Büttiker, “Distributions of Waiting Times of Dynamic Single-Electron Emitters,” Phys. Rev. Lett. 107
2011
Cited alongside, same era.
G. Fülöp, F. Domínguez, S. d’Hollosy, A. Baumgartner, P. Makk, M. H. Madsen, V. A. Guzenko, J. Nygård, C. Schönenberger, A. Levy Yeyati, and S. Csonka, “Magnetic Field Tuning and Quantum Interference in a Cooper Pair Splitter,” Phys. Rev. Lett. 115
2015
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N Ubbelohde, F Hohls, V Kashcheyevs, T. Wagner, L Fricke, B. Kästner, K. Pierz, H. W. Schumacher, and R. J. Haug, “Partitioning of on-demand electron pairs,” Nat. Nanotech. 10
2015
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I. V. Borzenets, Y. Shimazaki, G. F. Jones, M. F. Craciun, S. Russo, M. Yamamoto, and S. Tarucha, “High Efficiency CVD Graphene-lead (Pb) Cooper Pair Splitter,” Sci. Rep. 6
2016
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D. M. T. van Zanten, D. M. Basko, I. M. Khaymovich, J. P. Pekola, H. Courtois, and C. B. Winkelmann, “Single Quantum Level Electron Turnstile,” Phys. Rev. Lett. 116
2016
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P. Busz, D. Tomaszewski, and J. Martinek, “Spin correlation and entanglement detection in Cooper pair splitters by current measurements using magnetic detectors,” Phys. Rev. B 96
2017
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F. Brange, O. Malkoc, and P. Samuelsson, “Minimal Entanglement Witness from Electrical Current Correlations,” Phys. Rev. Lett. 118
2017
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E. Potanina and C. Flindt, “Electron waiting times of a periodically driven single-electron turnstile,” Phys. Rev. B 96
2017
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L. E. Bruhat, T. Cubaynes, J. J. Viennot, M. C. Dartiailh, M. M. Desjardins, A. Cottet, and T. Kontos, “Circuit QED with a quantum-dot charge qubit dressed by Cooper pairs,” Phys. Rev. B 98
2018
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N. Walldorf, C. Padurariu, A.-P. Jauho, and C. Flindt, “Electron Waiting Times of a Cooper Pair Splitter,” Phys. Rev. Lett. 120
2018
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E. Potanina, K. Brandner, and C. Flindt, “Optimization of quantized charge pumping using full counting statistics,” Phys. Rev. B 99
2019
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N. Walldorf, F. Brange, C. Padurariu, and C. Flindt, “Noise and full counting statistics of a Cooper pair splitter,” Phys. Rev. B 101
2020
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K. Wrześniewski and I. Weymann, “Current cross-correlations and waiting time distributions in Andreev transport through Cooper pair splitters based on a triple quantum dot system,” Phys. Rev. B 101
2020
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Z. B. Tan, A. Laitinen, N. S. Kirsanov, A. Galda, V. M. Vinokur, M. Haque, A. Savin, D. S. Golubev, G. B. Lesovik, and P. J. Hakonen, “Thermoelectric current in a graphene Cooper pair splitter,” Nat. Commun. 12
2021
Closest in time.
P. Pandey, R. Danneau, and D. Beckmann, “Ballistic Graphene Cooper Pair Splitter,” Phys. Rev. Lett. 126
2021
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A. Ranni, F. Brange, E. T. Mannila, C. Flindt, and V. F. Maisi, “Real-time observation of Cooper pair splitting showing strong non-local correlations,” Nat. Commun. 12
2021
Closest in time.
F. Brange, A. Schmidt, J. C. Bayer, T. Wagner, C. Flindt, and R. J. Haug, “Controlled emission time statistics of a dynamic single-electron transistor,” Sci. Adv. 7
2021
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