Organisation: Faculty of Science, Technology and Medicine (FSTM)
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Research Groups
Theoretical Solid State Physics
Learn moreWith the equations of quantum mechanics, implemented in modern computer codes, we calculate the physical properties of materials and predict new structures.
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Research Groups
Theoretical Chemical Physics
Learn moreBridging quantum mechanics, statistical mechanics, and machine learning to enable the modeling of systems at the intersection of physics, chemistry and biology
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Research Groups
Surface & Interface Physics
Learn moreWe use scanning probe and photo-electron spectroscopy methods to study the fundamental properties of surface and interfaces in solar cell and 2D materials.
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Research Groups
Quantum Information Science and Technology
Learn moreQIT group research combines theoretical quantum physics, information theory, nonequilibrium pheneomena and their control.
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Research Groups
Quantum dynamics and control
Learn moreWe are a theoretical group studying quantum open systems and non-hermitian dynamics, applied to many-body chaotic systems and to developing models for experiment
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Research Groups
Physics of active matter
Learn moreWe aim at exploring the thermodynamics of nonequilibrium systems whose constituents consume energy to sustained dynamical patterns.
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Research Groups
Physics of Living Matter
Learn moreSengupta Lab reveals LIFE (Living In Fluctuating Environments) spanning human to environmental microbes, facing local changes due to natural or man-made causes
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Research Groups
Nanomagnetism
Learn moreThe research of the Michels group is centered around the technique of magnetic small-angle neutron scattering (SANS).
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Research Groups
Multifunctional ferroic materials
Learn moreThe usefulness of ferroic materials derives from symmetry breaking phenomena studied in the MFM group by solid state spectroscopy methods.
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Research Groups
Laboratory for Photovoltaics
Learn moreOur mission at the Laboratory for Photovoltaics is to investigate the exact mechanisms that reduce the efficiency of real solar cells compared to ideal devices.