The poor man's Majorana tetron

Fuente: arXiv
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Hauptverfasser: Nitsch, Maximilian, Maffi, Lorenzo, Baran, Virgil V., Souto, Rubén Seoane, Paaske, Jens, Leijnse, Martin, Burrello, Michele
Format: Preprint
Veröffentlicht: 2024
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author Nitsch, Maximilian
Maffi, Lorenzo
Baran, Virgil V.
Souto, Rubén Seoane
Paaske, Jens
Leijnse, Martin
Burrello, Michele
author_facet Nitsch, Maximilian
Maffi, Lorenzo
Baran, Virgil V.
Souto, Rubén Seoane
Paaske, Jens
Leijnse, Martin
Burrello, Michele
contents The Majorana tetron is a prototypical topological qubit stemming from the ground state degeneracy of a superconducting island hosting four Majorana modes. This degeneracy manifests as an effective non-local spin degree of freedom, whose most paradigmatic signature is the topological Kondo effect. Degeneracies of states with different fermionic parities characterize also minimal Kitaev chains which have lately emerged as a platform to realize and study unprotected versions of Majorana modes, dubbed poor man's Majorana modes. Here, we introduce the ``poor man's Majorana tetron'', comprising four quantum dots coupled via a floating superconducting island. Its charging energy yields non-trivial correlations among the dots, although, unlike a standard tetron, it is not directly determined by the fermionic parity of the Majorana modes. The poor man's tetron displays parameter regions with a two-fold degenerate ground state with odd fermionic parity, that gives rise to an effective Anderson impurity model when coupled to external leads. We show that this system can approach a regime featuring the topological Kondo effect under a suitable tuning of experimental parameters. Therefore, the poor man's tetron is a promising device to observe the non-locality of Majorana modes and their related fractional conductance.
format Preprint
id arxiv_https___arxiv_org_abs_2411_11981
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The poor man's Majorana tetron
Nitsch, Maximilian
Maffi, Lorenzo
Baran, Virgil V.
Souto, Rubén Seoane
Paaske, Jens
Leijnse, Martin
Burrello, Michele
Mesoscale and Nanoscale Physics
Superconductivity
The Majorana tetron is a prototypical topological qubit stemming from the ground state degeneracy of a superconducting island hosting four Majorana modes. This degeneracy manifests as an effective non-local spin degree of freedom, whose most paradigmatic signature is the topological Kondo effect. Degeneracies of states with different fermionic parities characterize also minimal Kitaev chains which have lately emerged as a platform to realize and study unprotected versions of Majorana modes, dubbed poor man's Majorana modes. Here, we introduce the ``poor man's Majorana tetron'', comprising four quantum dots coupled via a floating superconducting island. Its charging energy yields non-trivial correlations among the dots, although, unlike a standard tetron, it is not directly determined by the fermionic parity of the Majorana modes. The poor man's tetron displays parameter regions with a two-fold degenerate ground state with odd fermionic parity, that gives rise to an effective Anderson impurity model when coupled to external leads. We show that this system can approach a regime featuring the topological Kondo effect under a suitable tuning of experimental parameters. Therefore, the poor man's tetron is a promising device to observe the non-locality of Majorana modes and their related fractional conductance.
title The poor man's Majorana tetron
topic Mesoscale and Nanoscale Physics
Superconductivity
url https://arxiv.org/abs/2411.11981