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Showing 1 to 11 of 11 for “"Settore PHYS-04/A - Fisica teorica della materia, modelli, metodi matematici e applicazioni"”.

  1. THE SPINTERFACE PROBLEM: AB-INITIO STUDIES OF FE-PHTHLOCYANINE ON TRANTITION-METAL OXIDES.

    … CoO(001) and Cr2O3(0001) as substrates. These materials are antiferromagnetic at high and/or room temperature and are characterized by low spin-orbit interaction, making them promising candidates for spin-excitation transport. For the metal-organic molecule, we chose Fe-phthalocyanine, a …

    milano Repository record for THE SPINTERFACE PROBLEM: AB-INITIO STUDIES OF FE-PHTHLOCYANINE ON TRANTITION-METAL OXIDES. (opens in a new tab)

  2. From structural dynamics to drug repurposing: computational approaches in the context of precision medicine

    Precision medicine represents a paradigm shift in therapeutic strategy, moving away from "one-size-fits-all" treatments toward approaches tailored to the unique characteristics of the patient. The success of this transition depends on the avail- ability of drugs acting on a wide variety of targets …

    cagliari Repository record for From structural dynamics to drug repurposing: computational approaches in the context of precision medicine (opens in a new tab)

  3. ON THE CONTROL OF OPEN QUANTUM BATTERIES

    Quantum control techniques provide a powerful framework to harness the potential of quantum technologies while addressing limitations imposed by noise and experimental constraints. These techniques enable critical tasks such as noise mitigation, dynamical shortcut engineering, and measurement …

    milano Repository record for ON THE CONTROL OF OPEN QUANTUM BATTERIES (opens in a new tab)

  4. COMBINING QUANTUM TRAJECTORIES AND TIME-DEPENDENT VARIATIONAL MONTE CARLO FOR MANY-BODY OPEN QUANTUM SYSTEMS

    Simulating quantum systems is complex due to the “curse of dimensionality”, which is exacerbated in open quantum systems that interact with their environment. Indeed, tra- ditional computational methods struggle with the exponential growth of Hilbert space in these systems. This thesis introduces …

    milano Repository record for COMBINING QUANTUM TRAJECTORIES AND TIME-DEPENDENT VARIATIONAL MONTE CARLO FOR MANY-BODY OPEN QUANTUM SYSTEMS (opens in a new tab)

  5. TENSOR NETWORKS FOR OPEN QUANTUM SYSTEMS

    Is it possible to efficiently simulate a quantum physical system on a classical computer? The computational resources needed to manipulate quantum many-body states typically scale exponentially in the number of their constituents, making the simulation very difficult or outright impossible even at …

    milano Repository record for TENSOR NETWORKS FOR OPEN QUANTUM SYSTEMS (opens in a new tab)

  6. FROM DATA PRODUCTION TO SEARCH FOR GALACTIC COSMICRAY SOURCES WITH THE PIERRE AUGER OBSERVATORY

    Astroparticle physics, at the crossroads of astrophysics and particle physics, investigates ultra-high-energy cosmic rays (UHECRs), the most energetic particles known in the Universe. Despite decades of research, their origins remain elusive. These particles are detected through extensive air …

    milano Repository record for FROM DATA PRODUCTION TO SEARCH FOR GALACTIC COSMICRAY SOURCES WITH THE PIERRE AUGER OBSERVATORY (opens in a new tab)

  7. Dihedral non-Abelian Lattice Gauge Theories: Physics and Quantum Simulation

    … for addressing open problems in high-energy physics. In this thesis, we investigate dihedral non-Abelian lattice gauge theories $D_N$---whose small order and finite local dimension make $D_3$ and $D_4$ natural targets for near-term quantum platforms---as a minimal yet physically rich arena …

    trento Repository record for Dihedral non-Abelian Lattice Gauge Theories: Physics and Quantum Simulation (opens in a new tab)