Overview
Microwave oscillations of the magnetization around its equilibrium are the natural dynamical response to external perturbations (e.g. thermal fluctuations, microwave fields). This offers the promise for a new class of microwave devices, benefiting from their small foot-print, their ability to be controlled electrically, and their integrability with CMOS technology. Identified devices include local oscillators, microwave filters, detectors, and non-reciprocal devices. Understanding the dynamics of these nano-objects, applying general concepts of microwave oscillator techniques and defining from this novel microwave applications is the major aim of this activity.
Research directions
Magnonics

Magnons are the quasi-particles associated to the collective excitations of spins. Mode engineering and transfer of angular momentum by magnonics current are some of our key ongoing research activities.
The team
Former members
Post-docs
- Artem LITVINENKO
PhD
- Nicolas Thiery
- Alumni : Kyota Watanabe (GP-Spin program)
Visitors
- W.E. Bailey – Columbia University (2009, 2010, 2011, 2012), A. N. Slavin – Oakland University (2012, 2013), V. Naletov (2016)
Recent news
- E pur si muove!* (July 23rd, 2026)

Angular momentum (AM) is the conserved quantity associated with rotational invariance. Harnessing its orbital component in axi-symmetric sample is often challenging. Interestingly, we show that azimuthal spin waves in normally magnetized disks are largely immune ... - PhD Defense – Angular Momentum Transfer Between Waveforms in Axisymmetric Geometries (May 27th, 2026)

On June 12th at 14:00, Giovanni Olivetti (SPINTEC) will defend his PhD thesis entitled : Angular Momentum Transfer Between Waveforms in Axisymmetric Geometries Place : CNRS Institut Néel, salle des Séminaires of Bâtiment A , the ... - Call for tender – MAGISTRAL Project (April 15th, 2026)

Recruiting consultant in crystal growth by liquid phase epitaxy Context: In 2025, the spin-insulatronics team of SPINTEC was awarded an exploratory grant from the PEPR SPIN program to develop new types of ultra-high-fidelity optomechanical modulators operating ... - PhD Defense by Maxime CULOT – Memristive switching in GeTe-based ferroelectric Schottky diodes for neuromorphic computing (January 06th, 2026)

On Wednesday January 21th, at 14:00, Maxime CULOT (SPINTEC) will defend his PhD thesis entitled : Memristive switching in GeTe-based ferroelectric Schottky diodes for neuromorphic computing Place : IRIG/SPINTEC, CEA Building 10.05, auditorium 445 (presential access to ... - A one-way sound transmitter (December 08th, 2025)

Magnetism is well-known to inherently break time-reversal symmetry; for example, the magnetization precesses in a single (counter-clockwise) direction around its equilibrium axis. By integrating a magnetic thin film onto a piezoelectric substrate, enabling phonons to ...







