With the discovery of the integer quantum Hall effect by von Klitzing and collaborators in 1980, the mathematical field of topology entered the world of condensed matter physics. Almost three decades later, this eventually led to the theoretical prediction and the experimental realization of many intriguing topological materials and...
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December 17, 2018 (v1)PublicationUploaded on: April 14, 2023
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2015 (v1)Publication
We analyze the time evolution of spin-polarized electron wave packets injected into the edge states of a two-dimensional topological insulator. In the presence of electron interactions, the system is described as a helical Luttinger liquid and injected electrons fractionalize. However, because of the presence of metallic detectors, no evidences...
Uploaded on: April 14, 2023 -
2015 (v1)Publication
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Uploaded on: April 14, 2023 -
2018 (v1)Publication
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Uploaded on: March 27, 2023 -
2016 (v1)Publication
The possibility of injecting a single electron into ballistic conductors is at the basis of the new field of electron quantum optics. Here, we consider a single electron injection into the helical edge channels of a topological insulator. Their counterpropagating nature and the unavoidable presence of electron-electron interactions dramatically...
Uploaded on: March 27, 2023 -
2017 (v1)Publication
Charge and energy fractionalization are among the most intriguing features of interacting one-dimensional fermion systems. In this work we determine how these phenomena are modified in the presence of an interaction quench. Charge and energy are injected into the system suddenly after the quench, by means of tunneling processes with a...
Uploaded on: March 27, 2023