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BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20260527T090000
DTEND;TZID=Europe/Paris:20260529T170000
DTSTAMP:20260618T145625
CREATED:20260305T155829Z
LAST-MODIFIED:20260305T160317Z
UID:10000095-1779872400-1780074000@sfp-alpes.fr
SUMMARY:Mag2Pol MasterClass
DESCRIPTION:We are pleased to announce the first Mag2Pol MasterClass\, an advanced course dedicated to diffraction data analysis using X-ray and (polarised) neutron data from powders and single-crystals. \nThe MasterClass will take place at the Institut Laue-Langevin (ILL) in Grenoble\, France. It is aimed at both early-career and experienced researchers\, and will combine focused lectures with hands-on tutorials. Particular emphasis will be placed on magnetic structure determination and symmetry analysis using Mag2Pol. \nTo ensure high pedagogical quality and close interaction between participants and instructors\, attendance will be limited to 30 participants. Selection will be based on a short CV and a brief statement of motivation. Please submit your applications before 15 March 2026. \nFull details\, including important dates\, registration information\, and a tentative program\, are available here : https://workshops.ill.fr/e/Mag2Pol \nFor any questions\, please contact us at : mag2pol@ill.fr
URL:https://sfp-alpes.fr/event/mag2pol-masterclass/
LOCATION:ILL – Salle de Séminaire (110-111)\, ILL 50 71 avenue des Martyrs\, Grenoble\, 38042\, France
CATEGORIES:Workshop
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20260528T090000
DTEND;TZID=Europe/Paris:20260528T170000
DTSTAMP:20260618T145625
CREATED:20260521T153306Z
LAST-MODIFIED:20260522T130038Z
UID:10000159-1779958800-1779987600@sfp-alpes.fr
SUMMARY:Académie Delphinale - Journée d’étude du Cercle Louis Néel
DESCRIPTION:Le Cercle Louis Néel est un Groupe de travail ouvert de l’Académie Delphinale. Il soutient l’organisation et la promotion du Prix Louis Néel de l’Académie Delphinale. \nContacts : prixlouisneel@academiedelphinale.com et presidence@academiedelphinale.com \nParticipation gratuite\, sur invitation ou inscription auprès des contacts. \nL’Académie sera très heureuse de vous recevoir et remercie l’INP de nous accueillir nombreux dans ses locaux. Merci aux orateurs pressentis et experts dans leur domaine. \nLe programme comportera une matinée rétrospective dédiée à Michel Soutif et un après-midi prospectif consacré aux Batteries. \nMatinée rétrospective\, 09 :30 – 12 :30 \nSéance 1 : Michel Soutif\, 1951\, un nouvel élan dans le sillage de Louis Néel. \n\nApports à Grenoble du physicien Michel Soutif (08/07/1921 – 28/06/2016) (25 mn). Elie BELORIZKY\nMichel Soutif\, professeur d’histoire des sciences à l’Université des sciences sociales (15 mn). Jacques LAMBERT\nMichel Soutif\, le professeur et l’ami (15 mn). Michel BARIBAUD\nLa RMN du solide\, son évolution de Soutif à aujourd’hui (20 mn). Mladen HORVATIC\nMichel Soutif\, l’IRM médicale et la Chine (20 mn). Jean-François LEBAS\nMichel Soutif\, la physique en biologie et les grands instruments (20 mn). Eva PEBAY-PEYROULA\nParticiperont également Jean BORNAREL (MS et Inovalée)\, Sylvie CHARVET (MS et l’International)\, Michel BELAKHOVSKY (MS et la Région Rhône-Alpes)\, Roland HERINO\, Muriel JACOBIAK (Com UGA).\n\nAprès-midi prospective\, 14 :00 à 17 :00 \nSéance 2 : Les batteries en plein essor. Difficultés et développements. (Titres des présentations en gras confirmés ou modifier) \n\nLes batteries présentation générale (30 mn)\, Philippe AZAIS\, CEA.\nCaractérisation et synchrotron (20 mn)\, Sandrine LYONNARD\, CEA.\nLes microbatteries (20 mn)\, Sami OUKASSI\, CEA.\nBatteries : vers de nouvelles chimies sans éléments critiques (20 mn). Lionel DUBOIS\, CEA/SyMMES – CAMPE.\nLes batteries tout solide (20 mn)\, Fannie ALLOIN\, INP\, LEPMI.\nIndustrie des batteries : implication de Grenoble INP-UGA dans les formations d’ingénieurs (20 mn). Alain DENOYELLE\, Grenoble INP-Phelma\, UGA.\n\n\n 
URL:https://sfp-alpes.fr/event/academie-delphinale-journee-detude-du-cercle-louis-neel/
LOCATION:Grenoble INP – Amphi Doyen Gosse\, 46 avenue Félix-Viallet\, Grenoble\, 38000\, France
CATEGORIES:Conférence
ORGANIZER;CN="Acad%C3%A9mie Delphinale":MAILTO:academiedelphinale@gmail.com
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20260528T130000
DTEND;TZID=Europe/Paris:20260528T140000
DTSTAMP:20260618T145625
CREATED:20260507T093329Z
LAST-MODIFIED:20260521T094049Z
UID:10000146-1779973200-1779976800@sfp-alpes.fr
SUMMARY:Vincent LACROIX  (LBBE - Lyon)
DESCRIPTION:Repeats : the dark side of transcriptome assembly\n_ \nContact : lucie.lamothe@univ-grenoble-alpes.fr
URL:https://sfp-alpes.fr/event/vincent-lacroix-lbbe-lyon/
LOCATION:IMAG – Salle de Réunion\, 150 place du Torrent\, St Martin d’Hères\, 38400\, France
CATEGORIES:Séminaire
ORGANIZER;CN="TIMC - IMAG":MAILTO:lucie.lamothe@univ-grenoble-alpes.fr
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20260528T140000
DTEND;TZID=Europe/Paris:20260528T150000
DTSTAMP:20260618T145625
CREATED:20260430T121134Z
LAST-MODIFIED:20260430T122107Z
UID:10000139-1779976800-1779980400@sfp-alpes.fr
SUMMARY:Alexandre BUZDIN (LOMA\, Bordeaux)
DESCRIPTION:Optical and TeraHertz radiation methods of flux manipulation in superconductors\nRésumé : \nAlthough the average properties of vortex matter in superconductors can be tuned using magnetic fields\, temperature\, or electric currents\, the manipulation of individual Abrikosov vortices remains challenging and has only been demonstrated with advanced scanning local probe microscopies. Recently\, a far-field optical method was proposed\, leveraging local heating of the superconductor with a focused laser beam to enable fast and precise manipulation of individual vortices\, akin to optical tweezers. This development paves the way for creating laser-driven Josephson junctions controlled by optically driven Abrikosov vortices. \nAnother approach for manipulating single flux quanta involves the so-called inverse Faraday effect\, where circularly polarized radiation interacts with the superconducting condensate\, acting as an effective magnetic field that generates supercurrents and DC magnetic moments. By employing the time-dependent Ginzburg–Landau equation formalism\, we have analyzed the current-carrying states of a small superconducting ring illuminated by such radiation. Numerical simulations reveal the possibility of 100% on-demand switching between current-carrying states in the superconductor by controlling the helicity of the electromagnetic field polarization. \nFurthermore\, theoretical analysis suggests the feasibility of the electromagnetic drag effect in superconductors—the generation of DC supercurrents and second harmonic signals induced by microwave radiation incident on a superconducting surface. \nThese findings open pathways to the all-optical operation of superconducting devices\, including RF SQUID flux qubits. \n_ \nContact : florence.levy-bertrand@neel.cnrs.fr
URL:https://sfp-alpes.fr/event/alexandre-buzdin-loma-bordeaux/
LOCATION:CNRS – Salle Rémy Lemaire (K223)\, CNRS - Institut Néel 25 avenue des Martyrs\, Grenoble\, 38042\, France
CATEGORIES:Séminaire
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BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20260528T140000
DTEND;TZID=Europe/Paris:20260528T150000
DTSTAMP:20260618T145625
CREATED:20260430T130321Z
LAST-MODIFIED:20260430T130828Z
UID:10000143-1779976800-1779980400@sfp-alpes.fr
SUMMARY:Charles McCRORY (Chemistry and Macromolecular Science and Engineering - University of Michigan\, USA)
DESCRIPTION:Breaking Scaling Relationships in Molecular Electrocatalysts for the CO2 Reduction Reaction\nProfesseur invité UGA du 15/05 au 15/06/2026 \nRésumé : \nFor molecular electrocatalysts\, beneficial decreases in effective overpotential are typically correlated with detrimental decrease in catalytic activity. This scaling relationship arises when both effective overpotential and kinetic reactivity scale with metal site nucleophilicity. Our research strategy is to break typical molecular scaling  relationships by designing molecular electrocatalysts with redox-active ligands where the catalytic reaction is initiated by redox activation of the ligand. These systems decouple metal site nucleophilicity from effective overpotential\, thus allowing us to break the correlation between catalyst reactivity and effective overpotential. \nIn this talk\, we will discuss how incorporating electronic substituents onto the redox-active ligand structure of Co(pyridyldiimine) complexes facilitates ligand reduction and leads to an inverse molecular scaling relationship for electrocatalytic CO2 reduction. We will explore the strategy of incorporating cationic charges into the complex as a means of breaking and inverting scaling relationships both through the incorporation of charged substituents into the ligand scaffold and through construction of homo- and heterobimetallic Co-Co and Co-Zn complexes. We will also discuss whether the activity enhancement from these cationic substituents is best described as\nthrough-space electrostatic stabilization of reactive intermediates\, or through-bond inductive effects related to the stabilization of the catalytic intermediates. Finally\, we will explore how these complexes operate for CO2 reduction and other electrocatalytic reductions when incorporated into larger coordination polymers and macromolecular scaffolds. \n_ \nContact : cyrille.costentin@univ-grenoble-alpes.fr
URL:https://sfp-alpes.fr/event/charles-mccrory-chemistry-and-macromolecular-science-and-engineering-university-of-michigan-usa/
LOCATION:DCM – Salle C209\, DCM - Bât Chimie Recherche 301 rue de la Chimie\, St Martin d'Hères\, 38400\, France
CATEGORIES:Séminaire
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