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Berlin 2012 – scientific programme

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O: Fachverband Oberflächenphysik

O 62: [TT] Transport: Graphene 1 (jointly with MA, HL, DY, DS, O)

Thursday, March 29, 2012, 09:30–13:00, BH 334

09:30 O 62.1 Spin relaxation in graphene induced by adatoms — •Jan Bundesmann and Klaus Richter
09:45 O 62.2 Emergent Gauge Fields in Bilayer Graphene — •Roland Winkler and Ulrich Zülicke
10:00 O 62.3 Single-parameter pumping in graphene — •Sigmund Kohler, Pablo San-Jose, Elsa Prada, and Henning Schomerus
10:15 O 62.4 Self-consistent theory of the second-harmonic generation in graphene — •Sergey Mikhailov
10:30 O 62.5 The Hubbard model on the bilayer honeycomb lattice with Bernal stacking — •Thomas C. Lang, Stefan Übelacker, Zi Yang Meng, Michael Scherer, Carsten Honerkamp, Alejandro Muramatsu, Fakher F. Assaad, and Stefan Wessel
10:45 O 62.6 Coulomb drag in graphene via kinetic equation approach — •Michael Schuett, Pavel M. Ostrovsky, Igor V. Gornyi, Mikhail Titov, Boris N. Narozhny, and Alexander D. Mirlin
11:00 O 62.7 Manifestation of electron-electron interaction in the magnetoresistance of graphene — •Johannes Jobst, Daniel Waldmann, Igor V. Gornyi, Alexander D. Mirlin, and Heiko B. Weber
11:30 O 62.8 Orbital Magnetism in graphene bulk and nanostructures — •Lisa Heße, Jürgen Wurm, and Klaus Richter
11:45 O 62.9 Klein paradox for arbitrary spatio-temporal scalar potential barrier and Josephson-like current in grapheneSergey E. Savel’ev, •Wolfgang Häusler, and Peter Hänggi
12:00 O 62.10 Relaxation in graphene quantum dots — •Christoph Neumann, Christian Volk, Sebastian Kazarski, Stefan Fringes, Stephan Engels, Bernat Terres, Jan Dauber, Stefan Trellenkamp, and Christoph Stampfer
12:15 O 62.11 Minimal tight-binding model for transport in graphene heterojunctions — •Ming-Hao Liu, Jan Bundesmann, and Klaus Richter
12:30 O 62.12 Quantum Hall effect in graphene with superconducting electrodes — •Markus Weiss, Peter Rickhaus, and Christian Schönenberger
12:45 O 62.13 Klein paradox for arbitrary spatio-temporal scalar potential barrier and Josephson-like current in grapheneSergey E. Savel’ev, •Wolfgang Häusler, and Peter Hänggi
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