F
Friedrich Reinert
Researcher at University of Würzburg
Publications - 157
Citations - 4691
Friedrich Reinert is an academic researcher from University of Würzburg. The author has contributed to research in topics: Angle-resolved photoemission spectroscopy & Topological insulator. The author has an hindex of 34, co-authored 145 publications receiving 3783 citations. Previous affiliations of Friedrich Reinert include Karlsruhe Institute of Technology.
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Journal ArticleDOI
Prediction and observation of the first antiferromagnetic topological insulator
Mikhail M. Otrokov,I. I. Klimovskikh,Hendrik Bentmann,Alexander Zeugner,Ziya S. Aliev,Sebastian Gass,Anja U. B. Wolter,A. V. Koroleva,D. A. Estyunin,Alexander M. Shikin,María Blanco-Rey,Martin Hoffmann,Alexandra Yu. Vyazovskaya,Sergey V. Eremeev,Yury M. Koroteev,Imamaddin R. Amiraslanov,Mahammad B. Babanly,Nazim Mamedov,N. A. Abdullayev,Vladimir N. Zverev,Bernd Büchner,Eike F. Schwier,Shiv Kumar,Akio Kimura,Luca Petaccia,Giovanni Di Santo,Raphael C. Vidal,S. Schatz,K. Kißner,Chul-Hee Min,Simon Moser,Thiago R. F. Peixoto,Friedrich Reinert,Arthur Ernst,Pedro M. Echenique,Anna Isaeva,Evgueni V. Chulkov +36 more
TL;DR: In this article, the authors used density functional theory and Monte Carlo method to predict the antiferromagnetic topological insulator (AFMTI) phase, which is hosted by the van der Waals layered compound MnBi$_2$Te$_4$.
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Chemical Aspects of the Candidate Antiferromagnetic Topological Insulator MnBi2Te4
Alexander Zeugner,Frederik Nietschke,Anja U. B. Wolter,S. Gaß,Raphael C. Vidal,Thiago R. F. Peixoto,Darius Pohl,Christine Damm,Axel Lubk,Richard Hentrich,Simon Moser,Simon Moser,Celso I. Fornari,Chul Hee Min,S. Schatz,K. Kißner,M. Ünzelmann,Martin Kaiser,Francesco Scaravaggi,Bernd Rellinghaus,Kornelius Nielsch,Christian Hess,Bernd Büchner,Friedrich Reinert,Hendrik Bentmann,Oliver Oeckler,Thomas Doert,Michael Ruck,Anna Isaeva +28 more
TL;DR: In this article, high quality single crystals of MnBi2Te4 were grown for the first time by slow cooling within a narrow range between the melting points of Bi2Te3 (586 °C) and MnBi 2Te4 (600 °C).
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Photoemission spectroscopy—from early days to recent applications
Friedrich Reinert,Stefan Hüfner +1 more
TL;DR: In this article, the authors describe the development of photoemission spectroscopy (PES) from the first historic observations of the photoelectric effect by Hertz and Hallwachs to state-of-the-art experiments.
Journal ArticleDOI
Submonolayer growth of copper-phthalocyanine on Ag(111)
Ingo Kröger,Benjamin Stadtmüller,Christoph Stadler,J. Ziroff,Mario Kochler,Andreas Stahl,Florian Pollinger,Florian Pollinger,Tien-Lin Lee,Jörg Zegenhagen,Friedrich Reinert,Christian Kumpf +11 more
TL;DR: In this article, the interface formation between copper-phthalocyanine (CuPc) and an Ag(111) surface using various complementary methods was investigated, including high-resolution low-energy electron diffraction revealed a rich phase diagram for this system with disordered (two-dimensional (2D)-gas-like) and ordered structures.
Journal ArticleDOI
Surface states and Rashba-type spin polarization in antiferromagnetic MnBi2Te4 (0001)
Raphael C. Vidal,Hendrik Bentmann,Thiago R. F. Peixoto,Alexander Zeugner,Simon Moser,Chul-Hee Min,S. Schatz,K. Kißner,M. Ünzelmann,Celso I. Fornari,Hari Babu Vasili,Manuel Valvidares,Kazuyuki Sakamoto,Debashis Mondal,Jun Fujii,Ivana Vobornik,Sungwon Jung,Cephise Cacho,Timur K. Kim,Roland J. Koch,Chris Jozwiak,Aaron Bostwick,J. D. Denlinger,E. Rotenberg,Jens Buck,Moritz Hoesch,Fritz Diekmann,Sebastian Rohlf,M. Kalläne,Kai Rossnagel,Mikhail M. Otrokov,Evgueni V. Chulkov,Michael Ruck,Anna Isaeva,Friedrich Reinert +34 more
TL;DR: In this paper, the authors acknowledge financial support from the DFG through SFB1170, Tocotronics, SPP 1666, ERA-Chemistry Programm (RU-776/15-1), and the Wurzburg-Dresden Cluster of Excellence on Complexity and Topology in Quantum Matter.