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Field
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properties—such as optical performance, wettability, or biological surface interactions—or give rise to entirely new features engineered down to the quantum scale. In this framework, we propose a Ph.D. thesis
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Prof. Slava Rychkov on problems of interest to the Simons Collaboration on Probabilistic Paths to Quantum Field Theory, in particular on the tensor network renormalization group for statistical physics
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the BERNARDO project, funded by the PEPR LUMA program (https://www.pepr-luma.fr/ ). The project focuses on chiroptical interactions, which play an essential role in fields such as biomolecular recognition
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environment spanning various areas of quantum physics, nanophysics and photonics. This project extends the current activities of the ODIN/MIR-THz group on acoustic wave devices in the frame of the Acousto-MIR
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Polymers using a combination of quantum and force field-based simulations that will be further integrated into a force field-based Molecular Dynamics (MD) approaches to assess the permeability and
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is entirely dedicated to the EQUIP-G project, submitted in response to the Horizon Europe call for projects 'Developing and deploying a network of quantum gravimeters in Europe'. This project, led by
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the quantum limit. They have proven reliable in space missions (Herschel) and airborne missions (SOFIA). LIRA has extensive experience with these technologies, achieving state-of-the-art sensitivities at 1.3
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to the vertices of a graph in such a way that no vertices connected by a line have the same color. Another family of problems, of great interest in quantum information, is the one of spherical and unitary `t