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to) SIESTA (www.siesta-project.org) and its TranSIESTA functionality. SIESTA is a multi-purpose first-principles method and program, based on Density Functional Theory, which can be used to describe the atomic
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atomic-layer-by layer engineer-ing of novel artificial metastable materials and interface superconductivity; (iv) studies of superconducting heterostructures, Josephson junctions, SQUIDS, nanowires, and
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Devices and Environment. Specifically, one of our main research lines is the design and fabrication of bioinspired materials for their application in tissue regeenration, brain diseases and environment
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-Efficient Devices and Environment. Specifically, one of our main research lines is the design and fabrication of bioinspired materials for their application in tissue regeenration, brain diseases and
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also works towards the development of technological applications based on these materials such as electronics, bioelectronics and biosensing, neural interfaces, etc. The activities cut across different
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contracting some products (health insurance, childcare, training, among others.) Training activities: languages, mentoring programme, wellbeing programme. International environment Estimated Incorporation date
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) and its TranSIESTA functionality. SIESTA is a multi-purpose first-principles method and program based on Density Functional Theory, which can describe the atomic and electronic properties of systems
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physics, which traditionally has relied upon powerful particle colliders, e.g. the LHC at CERN. Axions and axion-like particles (ALPs) are well-motivated dark matter candidates that could solve multiple
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advantages contracting some products (health insurance, childcare, training, among others.) Training activities: languages, mentoring programme, wellbeing programme. International environment Estimated
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computers and, as a result, many of them remain poorly understood. UItracold atoms trapped in optical lattices provide a pristine realization of the Hubbard model and hold the promise of solving many of its