
On September 22th at 14:00, Abderrazak Hakam (SPINTEC) will defend his PhD thesis entitled : Control of the stochastic phase dynamics of spin-torque nano-oscillators for unconventional computing Place : amphi M001 à Phelma, 3 Parvis Louis Neel video conference : https://univ-grenoble-alpes-fr.zoom.us/j/98769867024?pwd=dXNnT3RMeThjYStybGVQSUN0TVdJdz09 Meeting ID: 987 6986 7024 Passcode: 025918 Abstract : As computational problems grow in size […]
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Position: The project FLUSPIN is opening a 12-month position (possible extensions) for a postdoctoral researcher to explore the integration of Kramers-type thermal activation theories—validated for equilibrium conditions in superparamagnetic systems—with a functional calculus approach. This approach extends the Fokker-Planck equation (FPE) to magnetization dynamics under colored noise, moving beyond the usual Markovian approximations. By incorporating […]
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On July 8th, 2026 we have the pleasure to welcome in SPINTEC Dr. Martin UHRIN from The MIAI Cluster (Multidisciplinary Institute in Artificial Intelligence). He will give us a seminar at 11:00 entitled: Elevating Atomistic Machine Learning: From Physics-Informed Structural Models to the Electronic and Spin Frontier. Place: IRIG/SPINTEC, auditorium 445 CEA Building 10.05 (presential […]
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Spin waves are propagating fundamental excitations of magnetic systems, also carrying promises for low-power logic and data transfer. We report the measurement of thermal spin-wave spectra in single cylindrical nanowires, and their quantitative analysis as modes with a radial and azimuthal index. This opens the route for more elaborate investigations including generation, manipulation and detection. […]
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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 to imperfections that would otherwise prevent the wavefront from orbiting around the disk. * “And yet it moves!” is the […]
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Magnetically driven microparticles provide a versatile platform for probing and manipulating biological systems. Yet the physical framework governing their actuation in complex environments remains only partially explored. In this work, we introduced a simplified model describing the magneto-mechanical response of such particles embedded in viscoelastic media under varying magnetic fields. For several years now, the […]
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