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Koherens és nyílt kvantumoptikai hálózatok dinamikája és mérése
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Ezen az oldalon az NKFI Elektronikus Pályázatkezelő Rendszerében nyilvánosságra hozott projektjeit tekintheti meg.
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G Roósz, Z Zimborás, R Juhász,: Entanglement scaling in fermion chains with a localization-delocalization transition and inhomogeneous modulations,, Physical Review B, 102, 064204 (2020), 2020 | FB Maciejewski, Z Zimborás, M Oszmaniec,: Mitigation of readout noise in near-term quantum devices by classical post-processing based on detector tomography, Quantum 4, 257 (2020), 2020 | A Berezutskii, M Beketov, D Yudin, Z Zimborás, JD Biamonte: Probing criticality in quantum spin chains with neural networks, Journal of Physics: Complexity 1, 03LT01 (2020), 2020 | B. Kollár, A. Gilyén, I. Tkáčová, T. Kiss, I. Jex, and M. Štefaňák: Complete classification of trapping coins for quantum walks on the two-dimensional square lattice, Phys. Rev. A 102, 012207, 2020 | Bodog, F ; Mechler, M ; Koniorczyk, M ; Adam, P: Optimization of multiplexed single-photon sources operated with photon-number-resolving detectors, PHYSICAL REVIEW A 102 : 1 Paper: 013513 , 12 p., 2020 | Mogyorosi, G ; Adam, P ; Molnar, E ; Mechler, M: Single-step quantum state engineering in traveling optical fields, PHYSICAL REVIEW A 100 : 1 Paper: 013851 , 9 p., 2020 | S. Donadi, K. Piscicchia, Catalina Curceanu, L. Diósi, M. Laubenstein, A. Bassi: Underground test of gravity-related wave function collapse, Nat. Phys. (2020). https://doi.org/10.1038/s41567-020-1008-4, 2021 | G. Tóth, T. Vértesi, P. Horodecki, R. Horodecki: Activating hidden metrological usefulness, Phys. Rev. Lett. 125, 020402, 2020 | J. Kong, R. Jiménez-Martínez, C. Troullinou, V. G. Lucivero, G. Tóth, and Morgan W. Mitchell: Measurement-induced, spatially-extended entanglement in a hot, strongly-interacting atomic system, Nature Communications volume 11, Article number: 2415 (2020), 2020 | Géza Tóth: Stretching the limits of multiparticle entanglement, Quantum Views 4, 30 (2020), 2020 | Mátyás Koniorczyk, András Bodor, and Miklós Pintér: Ex ante versus ex post equilibria in classical Bayesian games with a nonlocal resource, Phys. Rev. A 101, 062115 – Published 29 June 2020, 2020 | G Roósz, Z Zimborás, R Juhász,: Entanglement scaling in fermion chains with a localization-delocalization transition and inhomogeneous modulations,, Physical Review B, 102, 064204 (2020), 2020 | FB Maciejewski, Z Zimborás, M Oszmaniec,: Mitigation of readout noise in near-term quantum devices by classical post-processing based on detector tomography, Quantum 4, 257 (2020), 2020 | Tamás Kiss, Igor Jex: Photons walk on fractal graphs, Nature Photonics 15 (9), 641-642, 2021 | D Qu, O Kálmán, G Zhu, L Xiao, K Wang, T Kiss, P Xue: Observation of the dynamics of an ergodic quantum protocol in a photonic realization, New Journal of Physics 23 (8), 083008, 2021 | P Adam, VA Andreev, MA Man’ko, VI Man’ko, M Mechler: Properties of Quantizer and Dequantizer Operators for Qudit States and Parametric Down-Conversion, Symmetry 2021, 13(1), 131, 2021 | K. F. Pál, G. Tóth, E. Bene, T. Vértesi: Bound entangled singlet-like states for quantum metrology, Phys. Rev. Res. 3, 023101, 2021 | L. Diósi: Two invariant surface-tensors determine CSL of massive body wave function, p217-226 in: Do wave functions jump?, eds.: V. Allori, A. Bassi, D. Dürr, N. Zanghi Springer,, 2021 | Thomas Nitsche, Syamsundar De, Sonja Barkhofen, Evan Meyer-Scott, Johannes Tiedau, Jan Sperling, Aurél Gábris, Igor Jex, and Christine Silberhorn: Local Versus Global Two-Photon Interference in Quantum Networks, Phys. Rev. Lett. 125, 213604, 2020 | János K. Asbóth and Arindam Mallick: Topological delocalization in the completely disordered two-dimensional quantum walk, Phys. Rev. B 102, 224202, 2020 | A Jahn, Z Zimborás, J Eisert:: Central charges of aperiodic holographic tensor-network models, Physical Review A 102, 042407, 2020 | Géza Tóth and Florian Fröwis: Uncertainty relations with the variance and the quantum Fisher information based on convex decompositions of density matrices, Phys. Rev. Research 4, 013075 – Published 31 January 2022, 2022 | Krzysztof Domino, Mátyás Koniorczyk, Zbigniew Puchała: Statistical quality assessment of Ising-based annealer outputs, Quantum Information Processing volume 21, Article number: 288 (2022), 2022 | Peter Adam, Ferenc Bodog, Matyas Koniorczyk, and Matyas Mechler: Single-photon sources based on asymmetric spatial multiplexing with optimized inputs, Phys. Rev. A 105, 063721 – Published 27 June 2022, 2022 | András Bodor, Orsolya Kálmán, and Mátyás Koniorczyk: Error-free interconversion of nonlocal boxes, Phys. Rev. A 106, 012223 – Published 29 July 2022, 2022 | P.V. Pyshkin, A. Gábris, Da-Wei Luo, J.Q. You, and Lian-Ao Wu: Tunable Tradeoff between Quantum and Classical Computation via Nonunitary Zeno-like Dynamics, Phys. Rev. Applied 18, 044060 – Published 25 October 2022, 2022 | Peter Adam, Ferenc Bodog, and Matyas Mechler: Spatially multiplexed single-photon sources based on incomplete binary-tree multiplexers, Opt. Express 30, 6999-7016 (2022), 2022 | Bodor András: Az egy- és kétrészű rendszerek nemklasszikus viselkedéséről, Doktori értekezés Pécsi Tudományegyetem, Fizika Doktori Iskola (2022), 2022 | Attila Portik, Orsolya Kálmán, Igor Jex, Tamás Kiss: Iterated nth order nonlinear quantum dynamics with mixed initial states, Physics Letters A Volume 431, 15 April 2022, 127999, 2022 | András Frigyik: Kvantumkriptográfia: kvantumkulcs-elosztás, egy nem-technikai megközelítés, Biztonságtudományi Szemle 2022. IV. évf. 2 . szám p51, 2022 | Daniel Burgarth, Jeff Borggaard, and Zoltán Zimborás: Quantum distance to uncontrollability and quantum speed limits, Phys. Rev. A 105, 042402 – Published 4 April 2022, 2022 | Alexander Jahn, Zoltán Zimborás, and Jens Eisert: Tensor network models of AdS/qCFT, Quantum 6, 643 (2022), 2022 | Adam Sawicki, Lorenzo Mattioli, and Zoltán Zimborás: Universality verification for a set of quantum gates, Phys. Rev. A 105, 052602 – Published 12 May 2022, 2022 | Lajos Diósi: On the conjectured gravity-related collapse rate E/h of massive quantum superpositions, AVS Quantum Sci. 4, 015605-(4) (2022), 2022 | M. Derakhshani, L. Diósi, M. Laubenstein, K. Piscicchia, Catalina Curceanu: At the crossroad of the search for spontaneous radiation and the Orch OR consciousness theory, Phys. Life Rev. 42, 8-14 (2022), 2022 | Lajos Diósi: Is there a relativistic Gorini-Kossakowski-Lindblad-Sudarshan master equation?, Phys.Rev. D106, L051901-(4) (2022), 2022 | Hugo Perrin, János K. Asbóth, Jean-Noël Fuchs, and Rémy Mosseri: Two particles on a chain with disordered interaction: Localization and dissociation of bound states and mapping to chaotic billiards, Phys. Rev. B 104, 205408 – Published 8 November 2021, 2021 | P V Pyshkin, E Ya Sherman, J Q You and Lian-Ao Wu: High-fidelity non-adiabatic cutting and stitching of a spin chain via local control, New J. Phys. 20 (2018) 105006, 2018 | Koniorczyk, M. and Bodor, A.: No-Signaling in Quantum Mechanics, Journal of Russian Laser Research July 2018, Volume 39, Issue 4, pp 376–381, 2018 | Emese Molnar, Peter Adam, Gabor Mogyorosi, and Matyas Mechler: Quantum state engineering via coherent-state superpositions in traveling optical fields, Phys. Rev. A 97, 023818 (2018), 2018 | I. Apellaniz, I. Urizar-Lanz, Z. Zimborás, P. Hyllus, and G. Tóth: Precision bounds for gradient magnetometry with atomic ensembles, Phys. Rev. A 97, 053603 (2018)., 2018 | K. Lange, J. Peise, B. Lücke, I. Kruse, G. Vitagliano, I. Apellaniz, M. Kleinmann, G. Tóth, and C. Klempt: Entanglement between two spatially separated atomic modes, Science 360, 416 (2018), 2018 | G. Vitagliano, G. Colangelo, F. Martin Ciurana, M. W. Mitchell, R. J. Sewell, and G. Tóth: Entanglement and extreme planar spin squeezing, Phys. Rev. A 97, 020301(R) (2018), 2018 | G. Tóth and T. Vértesi: Quantum states with a positive partial transpose are useful for metrology, Phys. Rev. Lett. 120, 020506 (2018), 2018 | Christian Krumnow, Zoltán Zimborás, and Jens Eisert: A fermionic de Finetti theorem, J. Math. Phys. 58, 122204 (2017), 2017 | Michał Oszmaniec and Zoltán Zimborás: Universal extensions of restricted classes of quantum operations, Phys. Rev. Lett. 119, 220502 (2017), 2017 | Dávid Jakab, Gergely Szirmai, and Zoltán Zimborás: The bilinear–biquadratic model on the complete graph, J. Phys. A: Math. Theor. 51, 105201 (2018), 2018 | Thomas Nitsche, Sonja Barkhofen, Regina Kruse, Linda Sansoni, Martin Štefaňák, Aurél Gábris, Václav Potoček, Tamás Kiss, Igor Jex, Christine Silberhorn: Probing Measurement Induced Effects in Quantum Walks via Recurrence, Science Advances 29 Jun 2018: Vol. 4, no. 6, eaar6444, 2018 | Orsolya Kálmán and Tamás Kiss: Quantum state matching of qubits via measurement-induced nonlinear transformations, Phys. Rev. A 97, 032125 – Published 26 March 2018, 2018 | Orsolya Kálmán, Tamás Kiss and Igor Jex: Sensitivity to Initial Noise in Measurement-Induced Nonlinear Quantum Dynamics, Journal of Russian Laser Research July 2018, Volume 39, Issue 4, pp 382–388, 2018 | Lajos Diósi: Fundamental Irreversibility: Planckian or Schrödinger–Newton?, Entropy 2018, 20(7), 496;, 2018 | Lajos Diósi: Wick theorem for all orderings of canonical operators, J.Phys. A51, 36521-(11) (2018), 2018 | Lajos Diósi: Normal ordering the squeeze operator by generalized Wick theorem, Journal of Russian Laser Research July 2018, Volume 39, Issue 4, pp 349–352, 2018 | Róbert Juhász, Johannes M. Oberreuter, Zoltán Zimborás: Entanglement Entropy of Disordered Quantum Wire Junctions, Journal of Statistical Mechanics, 123106 (2018), 2018 | Filiberto Ares, José G Esteve, Fernando Falceto, Zoltán Zimborás: Sublogarithmic behaviour of the entanglement entropy in fermionic chains, Journal of Statistical Mechanics, 093105, (2019), 2019 | Martin Malachov, Igor Jex, Orsolya Kálmán, and Tamás Kiss: Phase transition in iterated quantum protocols for noisy inputs, Chaos 29, 033107 (2019), 2019 | L.Diósi: Planck length challenges non-relativistic quantum mechanics of large masses, J.Phys.Conf.Ser. 1275, 012007-(5) (2019), 2019 | Gabor Mogyorosi, Peter Adam, Emese Molnar, and Matyas Mechler: Single-step quantum state engineering in traveling optical fields, Phys. Rev. A 100, 013851 (2019), 2019 | M Kornyik: A note on the asymptotics of random density matrices, J. Phys. Commun. 2 045012, 2018 | Kornyik, M., and Vukics, A.: The Monte Carlo wave-function method: A robust adaptive algorithm and a study in convergence., Computer Physics Communications, 238, 88-101., 2019 | P.V. Pyshkin, E.Ya. Sherman and Lian-Ao Wu: Non-Adiabatic Transformation of a Spin-Chain Geometry via Local Control, ACTA PHYSICA POLONICA A Vol. 135 (2019) No. 6, 2019 | G Zhu, O Kálmán, K Wang, L Xiao, D Qu, X Zhan, Z Bian, T Kiss, P Xue: Experimental orthogonalization of highly overlapping quantum states with single photons, Phys. Rev. A 100, 052307, 2019 | B. Kollár, A. Gilyén, I. Tkáčová, T. Kiss, I. Jex, and M. Štefaňák: Complete classification of trapping coins for quantum walks on the two-dimensional square lattice, Phys. Rev. A 102, 012207, 2020 | Adam, P. ; Andreev, V.A. ; Man'ko, M.A. ; Man'ko, V.I. ; Mechler, M.: SU(2) symmetry of qubit states and Heisenberg-Weyl symmetry of systems with continuous variables in the probability representation of quantum mechanics, SYMMETRY 12 : 7 Paper: 1099 , 23 p., 2020 | Bodog, F ; Mechler, M ; Koniorczyk, M ; Adam, P: Optimization of multiplexed single-photon sources operated with photon-number-resolving detectors, PHYSICAL REVIEW A 102 : 1 Paper: 013513 , 12 p., 2020 | Mogyorosi, G ; Adam, P ; Molnar, E ; Mechler, M: Single-step quantum state engineering in traveling optical fields, PHYSICAL REVIEW A 100 : 1 Paper: 013851 , 9 p., 2020 | L. Diósi: Spontaneous wave function collapse with frame dragging and induced Gravity, Quant.Rep. 1, 277-286, 2019 | S. Donadi, K. Piscicchia, Catalina Curceanu, L. Diósi, M. Laubenstein, A. Bassi: Underground test of gravity-related wave function collapse, Nat. Phys. (2020). https://doi.org/10.1038/s41567-020-1008-4, 2020 | G. Tóth, T. Vértesi, P. Horodecki, R. Horodecki: Activating hidden metrological usefulness, Phys. Rev. Lett. 125, 020402, 2020 | J. Kong, R. Jiménez-Martínez, C. Troullinou, V. G. Lucivero, G. Tóth, and Morgan W. Mitchell: Measurement-induced, spatially-extended entanglement in a hot, strongly-interacting atomic system, Nature Communications volume 11, Article number: 2415 (2020), 2020 | Géza Tóth: Stretching the limits of multiparticle entanglement, Quantum Views 4, 30 (2020), 2020 | Mátyás Koniorczyk, András Bodor, and Miklós Pintér: Ex ante versus ex post equilibria in classical Bayesian games with a nonlocal resource, Phys. Rev. A 101, 062115 – Published 29 June 2020, 2020 | Lennart Lorz, Evan Meyer-Scott, Thomas Nitsche, Václav Potoček, Aurél Gábris, Sonja Barkhofen, Igor Jex, and Christine Silberhorn: Photonic quantum walks with four-dimensional coins, Phys. Rev. Research 1, 033036 – Published 21 October 2019, 2019 | Balázs E. Szigeti, Gábor Homa, Zoltán Zimborás, Norbert Barankai,: Short time behavior of continuous time quantum walks on graphs,, Physical Review A, 100, 062320 (2019), 2019 |
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