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resonance imaging (fMRI) to measure functional activation during an emotion regulation paradigm. Besides, females will also undergo a resting-state measurement, diffusion tensor imaging and an anatomical scan
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of the following is considered an asset: Variational methods for many-body systems (e.g. MCTDH, DMRG, Quantum Monte Carlo). Exact diagonalization for lattice models. Tensor network methods (e.g. MPS, PEPS). Machine
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, mathematics of artificial intelligence, advanced optimization for decision making, matrix and tensor algebra, and the intersection of these areas. Close interaction with permanent research scientists in
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that as well? Welcome to our team! Where to apply Website https://iventajobdata.eu/bestmedia/img/2152027/1855868/cl/e8a59f5f267b149ded2fa… Requirements Specific Requirements Your professional field of activity
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/quantum-circuit techniques and/or approximate tensor-network methods. Analytical skills with integrability, random-matrix theory, dual-unitary circuits, hydrodynamics, or field-theoretic methods are also
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collaboration with local experimental groups to interpret and understand experimental findings. Proficiency in advanced many-body techniques—such as the density-matrix renormalization group, tensor-network states
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Physics” group, associated with the department of Mathematics, you will strengthen the group’s research profile in the mathematical theory of tensor networks and its application in quantum many-body physics
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Information and Quantum Many-Body Physics” group, associated with the department of Mathematics, you will strengthen the group’s research profile in the mathematical theory of tensor networks and its
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Physics” group, associated with the department of Mathematics, you will strengthen the group’s research profile in the mathematical theory of tensor networks and its application in quantum many-body physics
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position within a Research Infrastructure? No Offer Description Project description Third-cycle subject: Computer Science This Ph.D. project will develop and apply tensor-network and quantum-simulation