E
Erik Kampert
Researcher at University of Warwick
Publications - 87
Citations - 1999
Erik Kampert is an academic researcher from University of Warwick. The author has contributed to research in topics: Magnetization & Magnetic field. The author has an hindex of 17, co-authored 81 publications receiving 1535 citations. Previous affiliations of Erik Kampert include Radboud University Nijmegen & Helmholtz-Zentrum Dresden-Rossendorf.
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Superconductivity in Weyl semimetal candidate MoTe2
Yanpeng Qi,Pavel G. Naumov,Mazhar N. Ali,Catherine R. Rajamathi,Walter Schnelle,O. I. Barkalov,Michael Hanfland,Shu-Chun Wu,Chandra Shekhar,Yan Sun,Vicky Süß,Marcus Schmidt,Ulrich S. Schwarz,Eckhard Pippel,Peter Werner,Reinald Hillebrand,Tobias Förster,Erik Kampert,Stuart S. P. Parkin,Robert J. Cava,Claudia Felser,Binghai Yan,Sergey A. Medvedev +22 more
TL;DR: The sister compound of W Te2, MoTe2, predicted to be a Weyl semimetal and a quantum spin Hall insulator in bulk and monolayer form, is investigated and the observed dome-shaped superconductivity phase diagram provides insights into the interplay between super conductivity and topological physics.
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Anomalous Hall effect in Weyl semimetal half-Heusler compounds RPtBi (R = Gd and Nd).
Chandra Shekhar,Nitesh Kumar,Vadim Grinenko,Vadim Grinenko,Sanjay Singh,Rajib Sarkar,Hubertus Luetkens,Shu-Chun Wu,Yang Zhang,Alexander C. Komarek,Erik Kampert,Yurii Skourski,J. Wosnitza,J. Wosnitza,Walter Schnelle,Alix McCollam,Uli Zeitler,Jürgen Kübler,Binghai Yan,Hans-Henning Klauss,Stuart S. P. Parkin,Claudia Felser +21 more
TL;DR: The studies indicate that Weyl points in these half-Heuslers are induced by a magnetic field via exchange splitting of the electronic bands at or near the Fermi energy, which is the source of the chiral anomaly and the AHE.
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Tuning of the size of Dy2O3 nanoparticles for optimal performance as an MRI contrast agent.
TL;DR: The results of this study can be exploited for the rational design of MRI contrast agents, based on lanthanide oxide particles, with high efficiencies at magnetic field strengths of more than 1.5 T.
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Linear magnetoresistance in mosaic-like bilayer graphene
Ferdinand Kisslinger,Christian Ott,Christian Heide,Erik Kampert,Benjamin Butz,Erdmann Spiecker,Sam Shallcross,Heiko B. Weber +7 more
TL;DR: In this paper, the magnetoresistance of bilayer graphene has been shown to depend linearly, rather than quadratically, on the external magnetic field, leading to a mosaic-like network structure.
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Bulk Fermi surface of the Weyl type-II semimetallic candidate NbIrTe 4
Daniel Rhodes,R. Schönemann,Niraj Aryal,Qiong Zhou,Qiu Run Zhang,Erik Kampert,Yu-Che Chiu,You Lai,Y. Shimura,Y. Shimura,Gregory T. McCandless,Julia Y. Chan,Daniel W. Paley,June Hyuk Lee,A. D. Finke,Jacob Ruff,S. Das,Efstratios Manousakis,Luis Balicas +18 more
TL;DR: In this paper, a de Haas-van Alphen study on the electronic structure of WTe${}_{2}$ and of orthorhombic WTe{}$-MoTe{]{}-2} was presented, which, in contrast to ARPES and predictions, finds a simpler and more isotropic surface.