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Regensburg 2016 – wissenschaftliches Programm

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HL: Fachverband Halbleiterphysik

HL 17: Transport: Topological Insulators - 2D (Joint session of DS, HL, MA, O and TT, organized by TT)

Montag, 7. März 2016, 15:00–18:00, H18

15:00 HL 17.1 Probing the spin texture of generic helical edge states with an antidot — •Alexia Rod, Giacomo Dolcetto, Thomas L. Schmidt, and Stephan Rachel
15:15 HL 17.2 Electron quantum optics in 2d topological insulators — •Andrea Spichtinger, Sven Essert, Viktor Krückl, and Klaus Richter
15:30 HL 17.3 Transport in quantum spin Hall systems in parallel magnetic fields — •Michael Wimmer, Rafal Skolasinski, Dmitry Pikulin, and Jason Alicea
15:45 HL 17.4 Spectral functions of the correlated topological insulator — •Damian Zdulski and Krzysztof Byczuk
16:00 HL 17.5 The topological Anderson insulator phase in the Kane-Mele modelChristoph P. Orth, •Tibor Sekera, Christoph Bruder, and Thomas L. Schmidt
  16:15 15 min. break
16:30 HL 17.6 Interplay of topology and interactions in the quantum Hall regime of topological insulators: spontaneous symmetry breaking, tunable strongly interacting Luttinger liquid — •Stefan Jürgens, Maxim Kharitonov, and Björn Trauzettel
16:45 HL 17.7 Terahertz properties of Dirac electrons and holes in HgTe films with critical thickness — •Uladzislau Dziom, Alexey Shuvaev, Nikolai Mikhailov, Ze Don Kvon, and Andrei Pimenov
17:00 HL 17.8 Topological Edge States with Zero Hall Conductivity in a Dimerized Hofstadter Model — •Alexander Lau, Carmine Ortix, and Jeroen van den Brink
17:15 HL 17.9 Disorder induced zero Landau level in topological insulator nanowires and its signature in conductance fluctuations — •Emmanouil Xypakis and Jens H Bardarson
17:30 HL 17.10 Time-resolved pure spin fractionalization and spin-charge separation in helical Luttinger liquid based devices — •Giacomo Dolcetto, Matteo Carrega, Alessio Calzona, and Maura Sassetti
17:45 HL 17.11 Anisotropic magnetoresistance from the surface states of disordered topological insulators — •Henry Legg and Achim Rosch
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