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DOE OSTI Β· 2889495

Braiding of Majorana zero modes in vortex cores

Abstract

Here, we demonstrate the successful simulation of $\sqrt{𝑍-}$, $\sqrt{𝑋-}$, and 𝑋-quantum gates using Majorana zero modes (MZMs) that emerge in magnetic vortices located in topological superconductors. We compute the transition probabilities and geometric phase differences accounting for the full many-body dynamics and show that qubit states can be read out by fusing the vortex core MZMs and measuring the resulting charge density. We visualize the gate processes using the time- and energy-dependent nonequilibrium local density of states. Our results demonstrate the feasibility of employing vortex core MZMs for the realization of fault-tolerant topological quantum computing.

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BibTeXRIS

Buss, Maxwell [Univ. of Illinois, Chicago, IL (United States)] (ORCID:0009000939848977), Bedow, Jasmin [Univ. of Illinois, Chicago, IL (United States)] (ORCID:0000000220108567), Gupta, Prashant [Univ. of Illinois, Chicago, IL (United States)] (ORCID:0000000278345485), Morr, Dirk K. [Univ. of Illinois, Chicago, IL (United States)] (ORCID:0000000336922835). 2026-02-09. Braiding of Majorana zero modes in vortex cores. https://doi.org/10.1103/t264-dq2z

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Majorana zero modes in a heterogeneous structure of topological and trivial domains in FeSe 1βˆ’π‘₯ ⁒Te π‘₯

Here, we propose that the existence of vortices in FeSe 1βˆ’π‘₯ ⁒Te π‘₯ with and without Majorana zero modes (MZMs) can be explained by a heterogeneous mixture of strong topological and trivial superconducting domains, with only vortices in the former exhibiting MZMs. We identify the spectroscopic signatures of topological and trivial vortices and show that they are necessarily separated by a domain wall harboring Majorana edge modes. We demonstrate that when a vortex is moved from a trivial to a topological domain in real time, a domain wall Majorana edge mode is transferred to the vortex as an MZM.

Majorana bound states↗