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Ezen az oldalon az NKFI Elektronikus Pályázatkezelő Rendszerében nyilvánosságra hozott projektjeit tekintheti meg.
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E. Tóvári, P. Makk, M.-H. Liu, P. Rickhaus, Z. Kovács-Krausz, K. Richter, C. Schönenberger, S. Csonka: Gate-controlled conductance enhancement from quantum Hall channels along graphene p-n junctions, NANOSCALE 8, 19910, 2016 | Z. Scherübl, G. Fülöp, M. H. Madsen, J. Nygård, S. Csonka: Electrical tuning of Rashba spin-orbit interaction in multigated InAs nanowires, PHYSICAL REVIEW B 94:(3) Paper 035444. 8 p., 2016 | G. Fülöp, S. d'Hollosy, L. Hofstetter, A. Baumgartner, J. Nygård, C. Schönenberger, S. Csonka: Wet etch methods for InAs nanowire patterning and self-aligned electrical contacts, NANOTECHNOLOGY 27, Paper 195302 (2016), 2016 | Pósa L, El Abbassi M, Makk P, Sánta B, Nef C, Csontos M, Calame M, and Halbritter A: Multiple Physical Time Scales and Dead Time Rule in Few-Nanometers Sized Graphene–SiOx-Graphene Memristor, Nano Lett. 17: pp. 6783-6789, 2017 | El Abbassi M, Pósa L, Makk P, Nef C, Thodkar K, Halbritter A, and Calame M: From electroburning to sublimation: substrate and environmental effects in the electrical breakdown process of monolayer graphene, NANOSCALE 9: pp. 17312-17317, 2017 | El Abbassi M, Pósa L, Makk P, Nef C, Thodkar K, Halbritter A, and Calame M: From electroburning to sublimation: substrate and environmental effects in the electrical breakdown process of monolayer graphene, NANOSCALE 9: pp. 17312-17317, 2017 | B. Fülöp, Z. Tajkov, J. Pető, P. Kun, J. Koltai, L. Oroszlány, E. Tóvári, H. Murakawa, Y. Tokura, S. Bordács, L. Tapasztó, S. Csonka: Exfoliation of single layer BiTeI flakes, 2D Materials 5, 031013, 2018 | S. Zihlmann, A.W. Cummings, J. H. Garcia, M. Kedves, K. Watanabe, T. Taniguchi, C. Schönenberger, and P. Makk: Large spin relaxation anisotropy and valley-Zeeman spin-orbit coupling in WSe2/graphene/h-BN heterostructures, Physical Reiwe B 97, 075434, 2018 | D.I. Indolese, R. Delagrange, P. Makk, J.R. Wallbank, K. Wanatabe, T. Taniguchi, C. Schönenberger: Signatures of van Hove singularities probed by the supercurrent in a graphene - hBN superlattice accepted, Phys. Rev. Lett. 121,137701, 2018 | A Gubicza, D Zs Manrique, L Pósa, C J Lambert, G Mihály, M Csontos, A Halbritter: Asymmetry-induced resistive switching in Ag-Ag2S-Ag memristors enabling a simplified atomic-scale memory design, SCIENTIFIC REPORTS 6: Paper 30775. 9 p., 2016 | C. Handschin, B. Fülöp, P. Makk, S. Blanter, M. Weiss, K. Watanabe, T. Taniguchi, Sz. Csonka, C. Schönenberger: Point contacts in encapsulated graphene, APPLIED PHYSICS LETTERS 107:(18) Paper 183108, 2015 | Á. Gubicza, M. Csontos, A. Halbritter, G Mihály: Non-exponential resistive switching in Ag2S memristors: a key to nanometer-scale non-volatile memory devices, NANOSCALE 7:(10) pp. 4394-4399, 2015 | Á. Gubicza, M. Csontos, A. Halbritter, G. Mihály: Resistive switching in metallic Ag2S memristors due to a local overheating induced phase transition, NANOSCALE 7: pp. 11248-11254, 2015 | E. Tóvári, P. Makk, P. Rickhaus, C. Schönenberger, S. Csonka: Signatures of single quantum dots in graphene nanoribbons within the quantum Hall regime, Nanoscale, submitted, arXiv:1601.01628, 2016 | Á. Gubicza, M. Csontos, A. Halbritter, G Mihály: Non-exponential resistive switching in Ag2S memristors: a key to nanometer-scale non-volatile memory devices, NANOSCALE 7:(10) pp. 4394-4399, 2015 | Á. Gubicza, M. Csontos, A. Halbritter, G. Mihály: Resistive switching in metallic Ag2S memristors due to a local overheating induced phase transition, NANOSCALE 7: pp. 11248-11254, 2015 | E. Tóvári, P. Makk, P. Rickhaus, C. Schönenberger, S. Csonka: Signatures of single quantum dots in graphene nanoribbons within the quantum Hall regime, NANOSCALE 8, 11480-11486, 2016 | Halbritter A, Geresdi A, Mihaly G: Spin polarized transport as measured by superconducting Andreev spectroscopy, FRONT NANOSCI NANOTECH 2: (6) 1-8, 2016 |
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