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Lossless resilient microwave components based on disordered superconductors H/F

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Détail de l'offre

Informations générales

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Entité de rattachement

Le CEA est un acteur majeur de la recherche, au service des citoyens, de l'économie et de l'Etat.

Il apporte des solutions concrètes à leurs besoins dans quatre domaines principaux : transition énergétique, transition numérique, technologies pour la médecine du futur, défense et sécurité sur un socle de recherche fondamentale. Le CEA s'engage depuis plus de 75 ans au service de la souveraineté scientifique, technologique et industrielle de la France et de l'Europe pour un présent et un avenir mieux maîtrisés et plus sûrs.

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Référence

2025-35179  

Description de l'unité

The Fundamental Research Department conducts outstanding research in the fields of physics, chemistry, biology, climate and environmental sciences.
Our research group (www.lateqs.fr), hosted at CEA Grenoble, is part of the French national “Plan Quantique” and closely collaborates with in-house theory colleagues. The lab is located on a big scientific campus gathering not only CEA with its strong microelectronics research (300 mm clean room) but also other major scientific institutions such as CNRS (Institut Néel), ERSF (synchrotron), ILL (neutron source) and many high-tech companies as well as the University Grenoble Alpes.
Grenoble is a vibrant city offering many cultural activities, lovely bars and delicious restaurants. Located in the heart of the Alps it is the paradise for all outdoor enthusiasts.

Description du poste

Domaine

Physique de l'état condensé, chimie et nanosciences

Contrat

Post-doctorat

Intitulé de l'offre

Lossless resilient microwave components based on disordered superconductors H/F

Sujet de stage

Lossless resilient microwave components based on disordered superconductors

Durée du contrat (en mois)

24

Description de l'offre

During the last decades, superconducting quantum circuits have shown impressive results fueled by the so-called circuit Quantum ElectroDynamics (cQED) architecture where the quantum signal is carried by photons at microwave frequencies. cQED experiments often rely on the technology of aluminum Josephson Junctions (JJ's) which can be understood as  non-linear inductors. This non-linearity allowed the development of numerous non-linear lossless microwave components (tunable resonators [1], low noise amplifier [2] ...) which became essential tools for state-of-the-art cQED experiments. Yet, as a consequence of being built upon aluminum JJ's, all of these components are restricted to low magnetic field ≲ 250mT,  temperature ≲ 250mK and frequency  ≲ 10 GHz, strongly limiting the range of their application. The use of disordered superconductors with a large superconducting gap such as NbN would alleviate these constraints by one order of magnitude.

The goal of the project is to demonstrate that the non‐linearity of large gap disordered superconductors, here NbN, can advantageously replace Al JJ’s in order to offer lossless microwave components to research communities working at large magnetic field [3] ∼ 6 T, temperature ∼ 4 K and frequency ∼ 100 GHz.

[1] Appl. Phys. Lett. 92, 203501, 2008

[2] Appl. Phys. Lett. 118, 142601, 2021

[3] Appl. Phys. Lett. 118, 054001, 2021

Profil du candidat

PostDoc candidates are required to have a Ph. D. degree in physics or a related discipline (electrical engineering, nanosciences, ...). The successful candidate will bring a strong background in some of the following areas: superconducting quantum circuit, superconducting qubits, device nanofabrication, cryogenic experiments, experiment control and data acquisition. Strong python programming knowledge is a clear asset. French language proficiency is not necessary. The candidate will work within a team of researchers and will advise graduate and undergraduate students in their research projects.

 

How to apply:

To apply, please contact Étienne Dumur by email (etienne.dumur@cea.fr) including:

- a curriculum vitae (including prior research experience and skills acquired as well as names of potential referees) 

- your academic records (Master’s and PhD diploma)

- a list of publications

- a short statement of your research interest and how it relates to the project

 

English

French language proficiency is not necessary 

Localisation du poste

Site

Grenoble

Localisation du poste

France, Auvergne-Rhône-Alpes, Isère (38)

Ville

Grenoble

Critères candidat

Possibilité de poursuite en thèse

Non

Demandeur

Disponibilité du poste

01/06/2025


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