M. Snelder
MESA+ Institute for Nanotechnology
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Publication
Featured researches published by M. Snelder.
Nature Materials | 2012
M. Veldhorst; M. Snelder; M. Hoek; Tian Gang; V. K. Guduru; Xiaolin Wang; U. Zeitler; W. G. van der Wiel; Alexandre Avraamovitch Golubov; H. Hilgenkamp; Alexander Brinkman
The long-sought yet elusive Majorana fermion is predicted to arise from a combination of a superconductor and a topological insulator. An essential step in the hunt for this emergent particle is the unequivocal observation of supercurrent in a topological phase. Here, direct evidence for Josephson supercurrents in superconductor (Nb)-topological insulator (Bi(2)Te(3))-superconductor electron-beam fabricated junctions is provided by the observation of clear Shapiro steps under microwave irradiation, and a Fraunhofer-type dependence of the critical current on magnetic field. Shubnikov-de Haas oscillations in magnetic fields up to 30 T reveal a topologically non-trivial two-dimensional surface state. This surface state is attributed to mediate the ballistic Josephson current despite the fact that the normal state transport is dominated by diffusive bulk conductivity. The lateral Nb-Bi(2)Te(3)-Nb junctions hence provide prospects for the realization of devices supporting Majorana fermions.
Physica Status Solidi-rapid Research Letters | 2013
M. Veldhorst; M. Snelder; M. Hoek; C.G. Molenaar; Denise Pèilíng Leusink; Alexandre Avraamovitch Golubov; H. Hilgenkamp; Alexander Brinkman
The surface of a 3D topological insulator is conducting and the topologically nontrivial nature of the surface states is observed in experiments. It is the aim of this paper to review and analyze experimental observations with respect to the magnetotransport in Bi-based 3D topological insulators, as well as the superconducting transport properties of hybrid structures consisting of superconductors and these topological insulators. The helical spin-momentum coupling of the surface state electrons becomes visible in quantum corrections to the conductivity and magnetoresistance oscillations. An analysis will be provided of the reported magnetoresistance, also in the presence of bulk conductivity shunts. Special attention is given to the large and linear magnetoresistance. Superconductivity can be induced in topological superconductors by means of the proximity effect. The induced supercurrents, Josephson effects and current-phase relations will be reviewed. These materials hold great potential in the field of spintronics and the route towards Majorana devices.
New Journal of Physics | 2014
Y. Pan; D. Wu; J. R. Angevaare; H. Luigjes; E. Frantzeskakis; N. de Jong; E. van Heumen; T. V. Bay; B. Zwartsenberg; Y. Huang; M. Snelder; Alexander Brinkman; M. S. Golden; A. de Visser
In 3D topological insulators achieving a genuine bulk-insulating state is an important research topic. Recently, the material system (Bi,Sb)2(Te,Se)3 (BSTS) has been proposed as a topological insulator with high resistivity and a low carrier concentration (Ren et al 2011 Phys. Rev. B 84 165311). Here we present a study to further refine the bulk-insulating properties of BSTS. We have synthesized BSTS single crystals with compositions around x = 0.5 and y = 1.3. Resistance and Hall effect measurements show high resistivity and record low bulk carrier density for the composition Bi
Physical Review B | 2015
Prosper Ngabonziza; Rene Heimbuch; N. de Jong; R.A. Klaassen; M.P. Stehno; M. Snelder; A. Solmaz; S.V. Ramankutty; E. Frantzeskakis; E. van Heumen; Gertjan Koster; M. S. Golden; Henricus J.W. Zandvliet; Alexander Brinkman
_{1.46}
Journal of Physics: Condensed Matter | 2015
M. Snelder; Alexandre Avraamovitch Golubov; Yasuhiro Asano; Alexander Brinkman
Sb
Superconductor Science and Technology | 2014
M. Snelder; C.G. Molenaar; Y. Pan; D. Wu; Y. Huang; de A. Visser; Alexandre Avraamovitch Golubov; van der W.G. Wiel; H. Hilgenkamp; M.S. Golden; Alexander Brinkman
_{0.54}
Semiconductor Science and Technology | 2017
M.P. Stehno; Nico W. Hendrickx; M. Snelder; Thijs Scholten; Y. Huang; M. S. Golden; Alexander Brinkman
Te
Physical Review Letters | 2016
E. S. Tikhonov; D. V. Shovkun; M. Snelder; M. P. Stehno; Y. Huang; M. S. Golden; Alexandre Avraamovitch Golubov; Alexander Brinkman; V. S. Khrapai
_{1.7}
Physical Review B | 2014
M. Veldhorst; M. Hoek; M. Snelder; H. Hilgenkamp; Alexandre Avraamovitch Golubov; Alexander Brinkman
Se
Nature Materials | 2013
M. Veldhorst; M. Snelder; M. Hoek; T. Gang; V.K. Guduru; X.L. Wang; U. Zeitler; van der W.G. Wiel; Alexandre Avraamovitch Golubov; H. Hilgenkamp; Alexander Brinkman
_{1.3}