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Dresden 2017 – scientific programme

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MA: Fachverband Magnetismus

MA 13: Transport: Topological Phases (jointly with DS, MA, HL, O)

MA 13.8: Talk

Monday, March 20, 2017, 17:00–17:15, HSZ 304

Fractionalization of charge and energy after electron injection in 1D helical systems — •Alessio Calzona1,2,3, Matteo Acciai1, Matteo Carrega4, Fabio Cavaliere1,3, and Maura Sassetti1,31University of Genova, Italy — 2University of Luxembourg, Luxembourg — 3SPIN-CNR, Genova, Italy — 4NEST, Pisa, Italy

The possibility to inject a single electron into ballistic 1D conductors is at the basis of the new and fast developing field of electron quantum optics. In this respect, helical edge states of topological insulators can be used as electronic waveguides and would be an ideal playground [1,2].

Here we thus study and characterize the tunneling of a single electron from a mesoscopic capacitor into a couple of interacting helical edge channels [3]. The injection process leads to the creation of a pair of fractional excitations travelling in opposite directions. Their charge and energy profiles are analyzed. We also show that the energy partitioning between the two fractional excitations depends both on the interaction strength and on the injection parameters. Interestingly, this allows for a situation in which energy and charge mainly flow in opposite directions. In addition, such peculiar behavior of energy partitioning suggests that it can be also used as a tool to probe features of out-of-equilibrium systems [4].

[1] G. Fève et al., Science 316, 1169 (2007)

[2] D. Ferraro et al., PRB 89, 075407 (2014)

[3] A. Calzona et al., PRB 94, 035404 (2016)

[4] A. Calzona et al., arXiv:1610.04492

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