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Charge Sensing the Parity of an Andreev Molecule

Authors :
van Driel, D. (author)
Roovers, B. (author)
Zatelli, F. (author)
Bordin, A. (author)
Wang, Guanzhong (author)
van Loo, N. (author)
Wolff, J.C. (author)
Mazur, G.P. (author)
Kouwenhoven, Leo P. (author)
Dvir, T. (author)
van Driel, D. (author)
Roovers, B. (author)
Zatelli, F. (author)
Bordin, A. (author)
Wang, Guanzhong (author)
van Loo, N. (author)
Wolff, J.C. (author)
Mazur, G.P. (author)
Kouwenhoven, Leo P. (author)
Dvir, T. (author)
Publication Year :
2024

Abstract

The proximity effect of superconductivity on confined states in semiconductors gives rise to various bound states such as Andreev bound states, Andreev molecules, and Majorana zero modes. While such bound states do not conserve charge, their fermion parity is a good quantum number. One way to measure parity is to convert it to charge first, which is then sensed. In this work, we sense the charge of Andreev bound states and Andreev molecules in an InSb-Al hybrid nanowire using an integrated quantum dot operated as a charge sensor. We show how charge sensing measurements can resolve the even and odd states of an Andreev molecule, without affecting the parity. Such an approach can be further used for parity measurements of Majorana zero modes in Kitaev chains based on quantum dots.<br />Business Development<br />Medical Instruments & Bio-Inspired Technology<br />QRD/Kouwenhoven Lab<br />QRD/Wimmer Group<br />QN/Kouwenhoven Lab<br />Qubit Research Division

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1434557492
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1103.PRXQuantum.5.020301