Job Information
Organisation/Company: IMT Atlantique
Research Field: Physics
Researcher Profile: Recognised Researcher (R2); Leading Researcher (R4); First Stage Researcher (R1); Established Researcher (R3)
Application Deadline: 29 Sep 2026 - 22:00 (UTC)
Country: France
Type of Contract: Temporary
Job Status: Full-time
Offer Starting Date: 1 Oct 2024
Is the job funded through the EU Research Framework Programme? Other EU programme
Is the Job related to staff position within a Research Infrastructure? No
Offer Description
A key contender for future energy-efficient computing and signal processing devices is based on the manipulation of magnons or spin-waves, which are the elementary excitations of magnetic materials. Magnons can be manipulated on a broad range of the microwave spectrum at both room and low temperatures, and are therefore of interest for 5G/6G applications [1]. Besides, a wide variety of non-reciprocal effects inherent to spin dynamics offers promising opportunities for the miniaturization of analog signal processing components such as microwave isolators, circulator and directional couplers [2]. Furthermore, new functionalities are emerging from non-boolean and wave-based computing concepts, where both amplitude and phase of spin waves are considered as new degrees of freedom for encoding the information [3]. For all these reasons, spin-wave devices are now recognized as a credible beyond-CMOS technology.
The ability to visualize and manipulate coherent spin-wave transport is crucial for the development of magnonic devices. Recent studies demonstrated the possibility to image magnetization dynamics via NV magnetometry with unprecedented sensitivity and spatial resolution [5, 6]. However, research on spatially resolved spin-waves is at a very early stage, and constitutes mostly proof-of-concept measurement obtained on a home-built system at comparably low frequencies (i.e. below 3GHz). The purpose of this project is to construct an integrated probing scheme for QZabre commercialized NV center microscope that simplifies the access for non-expert users, and with the capacity to image magnetization dynamics at the nanoscale on a broad frequency and applied field range.
The PhD student will be working in close collaboration between IMT Atlantique and Qzabre, led respectively by Dr. Vincent Vlaminck, who brings a long-term experience in spin-wave spectroscopy, and Dr. Andrea Morales, who is a pioneer in commercialization of scanning NV magnetometry. This partnership combines two expert-level complementary skillsets to lead the development of a new measurement scheme.
Funding category: Financement de l'Union européenne
Marie Skłodowska-Curie COFUND SEED program - INDUSTRIAL TRACK
PHD title: Doctorat de Physique
PHD Country: France
Where to apply
Website: https://www.abg.asso.fr/fr/candidatOffres/show/id_offre/124837
Requirements
Specific Requirements
We are looking for resourceful candidates with sharp written and oral communication skills that are used to carrying out technical tasks autonomously. Candidates must possess a Master in physics or in engineering prior to the start of the PhD. Preferences will be given to candidates demonstrating proficiency in object–oriented programming, combined with meticulous craftsmanship to handle delicate experiments.
Additional Information
Work Location(s)
Number of offers available: 1
Company/Institute: IMT Atlantique
Country: France
City: Brest
This is a Preview Listing…
You must sign in to see the full job description, and to apply.
Manage / Upgrade this job to a Full Job Listing.
Find Your Best Opportunity
Tell them AcademicJobs.com sent you!

