Nanophysics seminar
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(Created page with "== Oroszlány László, Makk Péter(Ea) - 2011. január 13.== '''Channel sensitive theoretical and experimental analysis of Indium nanojunctions''' == Balogh Zoltán (JC), Irek ...") |
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[http://xxx.lanl.gov/abs/1011.6014 arXiv:1011.6014]''' | [http://xxx.lanl.gov/abs/1011.6014 arXiv:1011.6014]''' | ||
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An electron jet pump: The Venturi effect of a Fermi liquid, http://xxx.lanl.gov/PS_cache/arxiv/pdf/1011/1011.2289v1.pdf''' | An electron jet pump: The Venturi effect of a Fermi liquid, http://xxx.lanl.gov/PS_cache/arxiv/pdf/1011/1011.2289v1.pdf''' | ||
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[[:file:SpinOrbitQubit.ppt|fóliák (ppt)]], | [[:file:SpinOrbitQubit.ppt|fóliák (ppt)]], | ||
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[[:file:JC_topinka.pdf|fóliák (pdf)]], | [[:file:JC_topinka.pdf|fóliák (pdf)]], | ||
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== Peter Bokes (Ea), Bordács Sándor (JC) - 2010. október 21. == | == Peter Bokes (Ea), Bordács Sándor (JC) - 2010. október 21. == | ||
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[[:file:Bordacs_20101021.pdf|fóliák (pdf)]], | [[:file:Bordacs_20101021.pdf|fóliák (pdf)]], | ||
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== Pósa László (Ea), Makk Péter (JC) - 2010. október 14. == | == Pósa László (Ea), Makk Péter (JC) - 2010. október 14. == | ||
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[[:file:Jclub_20101014.pdf|fóliák (pdf)]], | [[:file:Jclub_20101014.pdf|fóliák (pdf)]], | ||
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== Geresdi Attila (JC) - 2010. október 7. == | == Geresdi Attila (JC) - 2010. október 7. == | ||
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'''Geresdi Attila: K. Uchida et al. Spin Seebeck effect - [http://nano.math.bme.hu Nature Materials 10.1038/nmat2856 (2010)]''' | '''Geresdi Attila: K. Uchida et al. Spin Seebeck effect - [http://nano.math.bme.hu Nature Materials 10.1038/nmat2856 (2010)]''' | ||
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== Makk Péter (Ea) - 2010. szeptember 28. == | == Makk Péter (Ea) - 2010. szeptember 28. == |
Revision as of 10:37, 31 January 2011
Oroszlány László, Makk Péter(Ea) - 2011. január 13.
Channel sensitive theoretical and experimental analysis of Indium nanojunctions
Balogh Zoltán (JC), Irek Weymann (Ea) - 2010. december 9.
Scherübl Zoltán (JC), Tóvári Endre (Ea) - 2010. december 2.
Scherübl Zoltán - Linze Li, Rui Qin, Hong Li, Qihang Liu, Guangfu Luo, Jing Lu, Zhengxiang Gao: Functionalized Graphene for High Performance Two-dimensional Spintronics Devices arXiv:1011.6014
Tóvári Endre - Grafén nanoszalagok készítése hidrogén plazmával
Dóra Balázs (Ea) - 2010. november 25.
Dóra Balázs - Majorana fermionok
fóliák (pdf), kapcsolódó cikkek:
Race for Majorana fermions by M. Franz - Physics
Ettore Majorana - EJTP
F. Wilczek - Majorana returns - Nat. Phys.
Topological quantum computing (with Majorana fermions) - Rev. Mod. Phys.
Tóvári Endre (Ea), Márton Attila (JC) - 2010. november 11.
Márton Attila - D. Taubert, G. J. Schinner, C. Tomaras, H. P. Tranitz, W. Wegscheider, S. Ludwig: An electron jet pump: The Venturi effect of a Fermi liquid, http://xxx.lanl.gov/PS_cache/arxiv/pdf/1011/1011.2289v1.pdf
Tóvári Endre - Grafén nanoszalagok előállítása
Csonka Szabolcs (JC), Halbritter András (JC) - 2010. november 4.
Csonka Szabolcs - S. Nadj-Perge, S.M. Frolov, E.P.A.M. Bakkers, L.P. Kouwenhoven: Spin-orbit qubit in a semiconductor nanowire - arXiv:1011.0064
fóliák (ppt), Recent interesting articles
Halbritter András - M.P. Jura et al.: Spatially probed electron-electron scattering in a two-dimensional electron gas - arXiv:1011.0106v1
fóliák (pdf), Recent interesting articles
Peter Bokes (Ea), Bordács Sándor (JC) - 2010. október 21.
Beter Bokes: Electron transport through atomic nanojunctions: from simple models to realistic simulations
Slovak University of Technology (FEI STU), Bratislava
There are various theoretical approaches to modeling electronic transport through atomic nanojunctions, each at different level of sophistication. First, there is an intuitively appealing description of coherent transport in terms of wavepackets in model 1D potential, where as the central quantity is identified with the probability of transmission of electrons across the junction. This transmission plays also the key role in determination of the conductance of a realistic models of nanojunctions within the ab initio methods. The energy-dependent features of transmission are intimately related to the local electronic structure of the junctions. Finally, due to the complexities of the electron-electron and/or electron-phonon interaction, there is a need of the formulation without the need of a one-particle picture in mind. One such possibility - the calculation of the conductance from the density-response function - will be introduced. All the above approaches will be demonstrated on an example of electronic transport through Al/AlOx/Al interface.
Bordács Sándor - Benjamin Krauss et al.: Raman Scattering at Pure Graphene Zigzag Edges - Nano Lett ASAP (2010)
fóliák (pdf), Recent interesting articles
Pósa László (Ea), Makk Péter (JC) - 2010. október 14.
Pósa László: Atomi méretű kontaktusok vizsgálata transzmissziós elektron mikroszkóppal
Makk Péter: Johannes S. Seldenthuis et al.: An all electric Single molecule Motor - ACS Nano ASAP(2010)
fóliák (pdf), Recent interesting articles
Geresdi Attila (JC) - 2010. október 7.
Geresdi Attila: K. Uchida et al. Spin Seebeck effect - Nature Materials 10.1038/nmat2856 (2010)
Makk Péter (Ea) - 2010. szeptember 28.
Makk Péter: Portugáliától Angliáig
Beszámoló a TNT2010 és a Funmols-NanoCTM meetingről
fóliák (pdf), kapcsolódó cikkek: Optical Probe of Quantum Shot-Noise Reduction at a Single-Atom Contact, Three-Dimensional Nanoscale Composition Mapping of Semiconductor Nanowires Strain-Induced Pseudo–Magnetic Fields Greater Than 300 Tesla in Graphene Nanobubbles
Geresdi Attila (Ea) - 2010. szeptember 21.
Geresdi Attila: Beszámoló a SM2010 konferenciáról