Jens Wiebe, Department of Physics, Universität Hamburg, Germany

Thursday June. 17 2021, 2:00 PM

Evidence for p-wave pairing and hybridizing Majoranas in artificial finite-size Shiba chains

A magnetic chain on an s-wave superconductor hosting a spin spiral or strong spin-orbit coupling can potentially realize a one-dimensional topological superconductor with Majorana bound states on its edges. Here, we investigate artificial spin chains which have been built atom-by[1]atom [1], with respect to the emergence of such topologically nontrivial electron phases. We vary the substrate and adatom species and the interatomic distances in the chain [2-5]. By this approach we can adjust the energetic positions of the multi-orbital Yu-Shiba-Rusinov (YSR) states induced by the adatoms [2,3], the hybridizations between these YSR states [4], as well as the spin structure in the chain [5]. This eventually enables to tailor the multi-orbital YSR bands emerging in the chain such that a p-wave gap opens in one of the YSR bands [6], and weakly protected, interacting Majorana bound states [7] have been realized.

We acknowledge funding by the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) via the Cluster of Excellence ’Advanced Imaging of Matter’ (EXC 2056-project ID 390715994), via the SFB-925 – project 170620586, and by the ERC via the Advanced Grant ADMIRE (No. 786020).

[1] D.-J. Choi, N. Lorente, J. Wiebe, K. von Bergmann, A. F. Otte, and A. J. Heinrich, Rev. Mod. Phys. 91, 041001 (2019).

[2] L. Schneider, M. Steinbrecher, L. Rózsa, J. Bouaziz, K. Palotás, M. dos Santos Dias, S. Lounis, J. Wiebe, and R. Wiesendanger, npj Quantum Materials 4, 42 (2019).

[3] L. Schneider, S. Brinker, M. Steinbrecher, J. Hermenau, T. Posske, M. dos Santos Dias, S. Lounis, R. Wiesendanger, and J. Wiebe, Nature Commun. 11, 4707 (2020).

[4] P. Beck, L. Schneider, L. Rózsa, K. Palotás, A. Lászlóffy, L. Szunyogh, J. Wiebe, and R. Wiesendanger, Nature Commun. 12, 2040 (2021).

[5] L. Schneider, P. Beck, J. Wiebe, and R. Wiesendanger, Science Advances 7, eabd7302 (2021).

[6] L. Schneider, P. Beck, T. Posske, D. Crawford, E. Mascot, S. Rachel, R. Wiesendanger, and J. Wiebe, Nat. Phys. (2021). https://doi.org/10.1038/s41567-021-01234-y.

[7] L. Schneider, P. Beck, J. Neuhaus-Steinmetz, T. Posske, J. Wiebe, and R. Wiesendanger, arXiv:2104.11503 [cond-mat.supr-con] (2021)


Haut de page



À lire aussi...

Nicolas Ubrig,Department of Quantum Matter Physics, University of Geneva

Nicolas Ubrig, jeudi 24 mai 2018, amphi Urbain à14h00 Valley and spin physics in atomically thin van der Waals materials The discovery of graphene (...) 

> Lire la suite...

Y. Todorov, Laboratoire de physique de l’Ecole Normale Supérieure, ENS, Paris

Thursday February 8 at 2:00 pm (Paris time) Room Charpak, Entrance building, ground floor Ultra-strong light-matter coupling regime in (...) 

> Lire la suite...