Pause
Read
CEA vacancy search engine

Modelling spin shuttling in Si and Ge spin qubits


Thesis topic details

General information

Organisation

The French Alternative Energies and Atomic Energy Commission (CEA) is a key player in research, development and innovation in four main areas :
• defence and security,
• nuclear energy (fission and fusion),
• technological research for industry,
• fundamental research in the physical sciences and life sciences.

Drawing on its widely acknowledged expertise, and thanks to its 16000 technicians, engineers, researchers and staff, the CEA actively participates in collaborative projects with a large number of academic and industrial partners.

The CEA is established in ten centers spread throughout France
  

Reference

SL-DRF-25-0405  

Direction

DRF

Thesis topic details

Category

Technological challenges

Thesis topics

Modelling spin shuttling in Si and Ge spin qubits

Contract

Thèse

Job description

Silicon and Germanium spin qubits have made outstanding progress in the past few years. In these devices, the elementary information is stored as a coherent superposition of the spin states of an electron or hole confined in a quantum dot embedded in a Si/SiO2 or SiGe heterostructure. These spins can be manipulated electrically and are entangled through exchange interactions, allowing for a variety of one- and two-qubit gates required for quantum computing and simulation. Grenoble is promoting original spin qubit platforms based on Si and Ge, and holds various records in spin lifetimes and spin-photon interactions. At CEA/IRIG, we support the progress of these quantum technologies with state-of-the-art modelling. We are, in particular, developing the TB_Sim code, able to describe very realistic qubit structures down to the atomic scale if needed.
Spin shuttling has emerged recently as a resource for spin manipulation and transport. A carrier and its spin can indeed be moved (shuttled) coherently between quantum dots, allowing for the transport of quantum information on long ranges and for the coupling between distant spins. The shuttling dynamics is however complex owing to the spin-orbit interactions that couple the motion of the carrier to its spin. This calls for a comprehensive understanding of these interactions and of their effects on the evolution and coherence of the spin. The aim of this PhD is to model shuttling between Si/Ge spin qubits using a combination of analytical and numerical (TB_Sim) techniques. The project will address spin manipulation, transport and entanglement in arrays of spin qubits, as well as the response to noise and disorder (decoherence). The PhD candidate will have the opportunity to interact with a lively community of experimentalists working on spin qubits at CEA and CNRS.

University / doctoral school

Ecole Doctorale de Physique de Grenoble (EdPHYS)
Université Grenoble Alpes

Thesis topic location

Site

Grenoble

Requester

Position start date

01/10/2025

Person to be contacted by the applicant

NIQUET Yann Michel yniquet@cea.fr
CEA
DRF/IRIG//MEM
CEA Grenoble
IRIG/MEM/L_Sim
17, rue des Martyrs
38054 Grenoble cedex 9
04.38.78.43.22

Tutor / Responsible thesis director

NIQUET Yann Michel yniquet@cea.fr
CEA
DRF/IRIG//MEM
CEA Grenoble
IRIG/MEM/L_Sim
17, rue des Martyrs
38054 Grenoble cedex 9
04.38.78.43.22

En savoir plus

https://scholar.google.fr/citations?user=h02ymwoAAAAJ
https://www.mem-lab.fr/en/Pages/L_SIM/Presentation.aspx
https://www.lateqs.fr/Research/Qubits.php