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Markus Münzenberg

Researcher at University of Greifswald

Publications -  155
Citations -  7377

Markus Münzenberg is an academic researcher from University of Greifswald. The author has contributed to research in topics: Magnetization & Magnetization dynamics. The author has an hindex of 37, co-authored 155 publications receiving 6049 citations. Previous affiliations of Markus Münzenberg include University of Göttingen.

Papers
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Journal ArticleDOI

The impact of metallic contacts on spin-polarized photocurrents in topological insulator $\text{Bi}_2\text{Se}_3$ nanowires

TL;DR: In this paper, the helicity-dependent spin-polarized current and the polarization independent thermoelectric current as spatially resolved maps, focusing on the influence of the topological insulator/metallic contact interface.
Posted Content

Energy equilibriation processes of electrons, magnons and phonons on the femtosecond timescale

TL;DR: In this paper, the energy dissipation process on femtosecond (electron-spin relaxation time) and nanosecond timescale (Gilbert relaxation $\tau_{\alpha}$) was compared by means of time-resolved Kerr spectroscopy experiments.
Journal ArticleDOI

High-speed spins

TL;DR: In this article, it was shown that short-wavelength coherent spin wave can travel at high speed over a long distance and can carry information that could be used for data processing, but producing and controlling them can be challenging.
Proceedings ArticleDOI

Ultrafast spin precession and transport controlled and probed with terahertz radiation

TL;DR: In this article, the terahertz (THz) electromagnetic transients can be used to control spin precession in antiferromagnets (through the THz Zeeman torque) and probe spin transport in magnetic heterostructures, on femtosecond time scales.
Posted Content

Ultrafast shift photocurrents at the surface of the three-dimensional topological insulator $Bi_2Se_3$

TL;DR: In this article, the authors measured photocurrents in the three-dimensional model topological insulator with a time resolution as short as 20 fs by sampling the concomitantly emitted broadband THz electromagnetic field from 1 to 40 THz.