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Julian Hamo (IJCLab)08/06/2026 11:30
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Bernardo Cornejo Avila (CEA IRFU/DPhP)08/06/2026 11:45
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Thomas Jacquot08/06/2026 12:00
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Anastasiia MIKHNO (LPNHE, IJCLab)08/06/2026 12:15
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Rihab Chakir08/06/2026 14:00
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Ahmed Glayl08/06/2026 14:15
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Mathieu Gautier08/06/2026 14:30
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Merry DUPARC (IJCLab)08/06/2026 14:45
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Domitille Chebat (CEA Saclay - IRFU - DPhP)08/06/2026 15:00
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Joanna Matulewicz08/06/2026 15:50
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Giulia Rosso08/06/2026 16:05
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Adrien Cogez (CEA/IRFU/DPhP)08/06/2026 16:20
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Baptiste DUROX (IJCLab)08/06/2026 16:35
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Alisha Lightbody08/06/2026 16:50
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Raoul Henderson09/06/2026 09:00
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Mostafa Cherif09/06/2026 09:15
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Sara Garetti (Université Paris-Saclay, IJCLab)09/06/2026 09:30
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Xin XIA (IJCLAB)09/06/2026 09:45
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Elouan Ferrand (CEA/DhPN/LSN)09/06/2026 10:00
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Nicolas Sterckx09/06/2026 10:15
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Yuliia Maidannyk09/06/2026 11:50
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Alice Renaux09/06/2026 12:05
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Elia Nseir09/06/2026 12:20
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Christian de Correc (Eviden, ICJ Lab)09/06/2026 15:05
Quantum mechanics, at its heart, can be recast as an algebraic deformation of classical mechanics. While this approach - which is equivalent to the usual Hilbert space formalism - is theoretically satisfying, it also suggests that some quantum systems can be emulated through a simple deformation of the classical Hamiltonian dynamics. This presentation will give an overview of this algorithm,...
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Youliana Mouawad09/06/2026 15:20
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Mathilde Ragot (CEA/IRFU/DPhN)09/06/2026 16:35
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Enzo Thiriont-Bernolle (CEA DAM)09/06/2026 16:50
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Elisavet Fasoula09/06/2026 17:05
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Pierre Boistier09/06/2026 17:20
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Jérémy Quelin Lechevranton (IJCLab, DUNE)09/06/2026 17:35
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