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BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20260902T000000
DTEND;TZID=Europe/Paris:20260929T235959
DTSTAMP:20260124T042228Z
CREATED:20260124T042228Z
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UID:10000034-1788307200-1790726399@sfp-alpes.fr
SUMMARY:X-Ray and neutron Science
DESCRIPTION:International Summer Programme on Neutron and X-Ray Science for undergraduate students \nMore information is available on the website : \nhttps://workshops.ill.fr/e/SummerSchool2026 and on the poster \nIt is a very interesting opportunity for undergraduate students to discover these techniques and the science at our institutes. We would be grateful if you forward this information to students who may be interested. Applications close on February 28th. \nContact : summerschool-2026@ill.eu
URL:https://sfp-alpes.fr/event/x-ray-and-neutron-science/
LOCATION:ILL – Salle de Séminaire (SB-036)\, ILL 71 avenue des Martyrs\, Grenoble\, 38042\, France
CATEGORIES:Conférence,Workshop
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20260924T100000
DTEND;TZID=Europe/Paris:20260924T110000
DTSTAMP:20260917T151916Z
CREATED:20260917T151850Z
LAST-MODIFIED:20260917T151916Z
UID:10000259-1790244000-1790247600@sfp-alpes.fr
SUMMARY:Laura B. STEREN (Instituto de Nanociencia y Nanotecnologia CNEA/CONICET\, Buenos Aires\, Argentina)
DESCRIPTION:Emergent phenomena at Oxides surface and Interfaces\nRésumé : \nComplex oxides exhibit a rich variety of optical\, electronic\, and magnetic behaviours. When these materials are confined to the nanoscale\, they can display interfacial and size-dependent effects that are not present in bulk materials. The ability to design and fabricate artificial oxide heterostructures with tailored functionalities has therefore made them an important platform within the broader field of quantum materials. In this talk\, I will present our most recent results in oxide spintronics\, describe the main research directions pursued by our team\, and discuss the experimental challenges of controlling these materials at the nanometre scale\, where structure\, interfaces\, and functionality must be precisely managed to advance future oxide-based spintronic technologies. \n_ \nCollege 5B Secretary \nEdmond CHAN \nExternal visitors may ask for a site access to Brigitte Dubouloz (dubouloz@ill.fr)
URL:https://sfp-alpes.fr/event/laura-b-steren-instituto-de-nanociencia-y-nanotecnologia-cnea-conicet-buenos-aires-argentina/
LOCATION:ILL 50 building – room 101\, EPN Campus - 71 avenue des Martyrs\, Grenoble\, 38000\, France
CATEGORIES:Séminaire
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20260924T113000
DTEND;TZID=Europe/Paris:20260924T123000
DTSTAMP:20260917T150745Z
CREATED:20260917T150745Z
LAST-MODIFIED:20260917T150745Z
UID:10000258-1790249400-1790253000@sfp-alpes.fr
SUMMARY:Jérémie POSCHMANN (Université de Nantes)
DESCRIPTION:Functional genomics of brain disease : linking regulatory mechanisms\, circulating immune states and clinical trajectories\nRésumé : \nMy research uses func-onal genomics to characterize disease associated molecular states and to understand how they relate to biological mechanisms\, clinical heterogeneity and patient trajectories. I first used functional genomics directly in human brain tissue to identify regulatory alterations associated with disease. In autism spectrum disorder\, genome wide profiling revealed that clinically and genetically heterogeneous patients nevertheless shared convergent changes in regulatory activity. Subsequent studies in other brain disorders showed that this convergence at the molecular level was a recurrent feature and established functional genomics as a powerful approach to resolve disease-associated regulatory states. I subsequently extended this approach to circulating cells\, with the objective of accessing disease associated molecular states in living patients. In severe brain injury and psychiatric disorders\, our studies identified\nimmune and regulatory signatures associated with clinical trajectories and disease severity. These results support the use of circulating immune states to characterize biological heterogeneity beyond conventional diagnostic categories and provide a basis for patient stratification. A complementary programme in genetically defined neurodevelopmental disorders allows us to investigate these molecular alterations in a causal framework. By profiling patient blood cells carrying pathogenic variants in chromatin and proteostasis regulators\, we can connect a defined genetic alteration to its molecular consequences and to disease-relevant cellular pathways. \nTogether\, these studies establish a func-onal genomics framework that links regulatory mechanisms to accessible biomarkers and clinical trajectories in neurological and psychiatric disease. \n_ \nContact : yury.lages@univ-grenoble-alpes.fr ou sebastien.carnicella@univ-grenoble-alpes.fr \n 
URL:https://sfp-alpes.fr/event/jeremie-poschmann-universite-de-nantes/
LOCATION:GIN – Amphi Serge Kampf\, Grenoble Institut des Neurosciences (GIN) Bât. Edmond J. Safra\, Chemin Fortune Ferrini CHU\, La Tronche\, 38700\, France
CATEGORIES:Séminaire
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20260924T140000
DTEND;TZID=Europe/Paris:20260924T150000
DTSTAMP:20260827T153130Z
CREATED:20260827T153130Z
LAST-MODIFIED:20260827T153130Z
UID:10000225-1790258400-1790262000@sfp-alpes.fr
SUMMARY:Alexandre BERNARD (Walter Schottky Institute\, TU Munich)
DESCRIPTION:Remanent anomalous Hall effect from dual spin-orbit and exchange proximity in graphene heterostructure\nRésumé : \nThe coexistence of induced spin-orbit coupling (SOC) and magnetic exchange fields is predicted to drive graphene into topological phases\, such as the quantum anomalous Hall state. In this talk\, I will discuss the prospect of using monolayer graphene proximitized by WSe2 (SOC) and Cr2Ge2Te6 (magnetic exchange) to reach such “ex-so-tic” states. Low-temperature magnetotransport measurements of the heterostructures reveal a large and gate-tunable remanent anomalous Hall effect (AHE) persisting at zero magnetic field. Combining data analysis over various magnetic field ranges and a simple model\, we explain our findings by an intrinsic AHE regime\, where Berry curvature hot-spots from the interplay of SOC and magnetism dominate the Hall response\, but disorder broadening prevents quantization and a full topological phase transition. These results demonstrate the potential of double proximity effects in graphene-based van der Waals heterostructures as a route toward gate-tunable topological graphene phases and devices based on chiral edge states. \n_ \nContact : florence.levy-bertrand@neel.cnrs.fr \n 
URL:https://sfp-alpes.fr/event/alexandre-bernard-walter-schottky-institute-tu-munich/
LOCATION:CNRS – Salle Rémy Lemaire (K223)\, CNRS - Institut Néel 25 avenue des Martyrs\, Grenoble\, 38042\, France
CATEGORIES:Séminaire
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