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The binding of cosmological structures by massless topological defects
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Monthly Notices of the Royal Astronomical Society,
2024 |
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[2]
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Cosmology using Strong Gravitational Lensing
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arXiv preprint arXiv:2405.03397,
2024 |
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[3]
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arXiv: Pursuit of paired dijet resonances in the Run 2 dataset with ATLAS
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2023 |
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[4]
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Unsupervised photometric detection of galaxy cluster candidates in large surveys
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Martins… - The Sixteenth Marcel …,
2023 |
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[5]
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Pursuit of paired dijet resonances in the Run 2 dataset with ATLAS
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arXiv preprint arXiv:2307.14944,
2023 |
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[6]
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Signatures of Dipolar Dark Matter on indirect detection
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Celiz, AA López, JEB Guevara… - Journal of Physics G …,
2022 |
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Search for vector-like-fermion in the CMS detector at the LHC: one low transverse momentum muon and missing transverse momentum final state
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2022 |
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Deep learning the astrometric signature of dark matter substructure
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Physical Review D,
2021 |
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Ultralight DM bosons with an Axion-like potential: scale-dependent constraints revisited
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2020 |
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[10]
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Power of halometry
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2020 |
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[11]
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Constraints on mediator-based dark matter and scalar dark energy models using s = 13 TeV pp collision data collected by the ATLAS …
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2019 |
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[12]
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Constraints on mediatorbased dark matter and scalar dark energy models using s= 13 TeV pp collision data collected√ by the ATLAS detector
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Journal of High Energy Physics,
2019 |
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[13]
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Constraints on mediator-based dark matter and scalar dark energy models using s√ s= 13 TeV pp collision data collected by the ATLAS detector
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2019 |
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[14]
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Constraints on mediator-based dark matter and scalar dark energy models using s√= 13 TeV pp collision data collected by the ATLAS detector
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2019 |
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[15]
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Exploration of unsupervised machine learning methods to study galaxy clustering
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2019 |
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[16]
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Simulation and Characterization of a LXe TPC for DARWIN R&D
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2019 |
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[17]
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Constraints on mediator-based dark matter and scalar dark energy models using TeV collision data collected by the ATLAS detector
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2019 |
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[18]
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Scattering of high-energy cosmic ray electrons off the Dark Matter
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2019 |
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[19]
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Contraint on mediator-baed dark matter and calar dark energy model uing $$\qrt {} $$= 13 TeV pp colliion data collected by the ATLAS detector
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2019 |
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[20]
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Annihilation of Dipolar Dark Matter to Photons
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2019 |
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[21]
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Constraints on mediator-based dark matter and scalar dark energy models using root s= 13 TeV pp collision data collected by the ATLAS detector
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2019 |
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[22]
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Constraints on mediator-based dark matter and scalar dark energy models using√ s= 13 TeV pp collision data collected by the ATLAS detector
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2019 |
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[23]
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Combinations of single-top-quark production cross-section measurements and vertical bar f(LV)V(tb)vertical bar determinations at root s=7 and 8 TeV with the ATLAS and CMS experiments
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Thesis,
2019 |
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[24]
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Dark Matter and Dark Energy: Mysteries of the Universe
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2018 |
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[25]
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Constraints on light Dark Matter fermions from relic density consideration and Tsallis statistics
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2018 |
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[26]
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Cosmological Tests of Gravity
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Thesis,
2018 |
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[27]
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The Joint Institute for Nuclear Research in Experimental Physics of Elementary Particles
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Physics of Particles and Nuclei,
2018 |
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[28]
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Finding closure: approximating Vlasov-Poisson using finitely generated cumulants
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Journal of Cosmology and Astroparticle Physics,
2018 |
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[29]
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The motion of color-charged particles as a means of testing the non-Abelian dark matter model
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2018 |
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[30]
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Объединенный институт ядерных исследований в экспериментальной физике элементарных частиц
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2017 |
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[31]
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Тёмная материя в галактиках
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2017 |
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[32]
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Dark matter in galaxies
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Physics-Uspekhi,
2017 |
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[33]
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Dark Matter Annihilation in the Circumgalactic Medium at High Redshifts
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2017 |
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[34]
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Dark matter annihilation in the Epoch of Reionisation
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2017 |
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[35]
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Confronting recent AMS-02 positron fraction and Fermi-LAT extragalactic γ-ray background measurements with gravitino dark matter
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Physics of the Dark Universe,
2016 |
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[36]
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Warm dark matter sterile neutrinos in electron capture and beta decay spectra
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Advances in High Energy Physics,
2016 |
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[37]
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Seven years of gamma-ray astrophysics with the Fermi LAT
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Nuclear and Particle Physics Proceedings,
2016 |
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[38]
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Sterile neutrinos in the early Universe
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2015 |
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[39]
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Observation of the new emission line at~ 3.5 keV in X-ray spectra of galaxies and galaxy clusters
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2015 |
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[40]
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General relativistic, nonstandard model for the dark sector of the Universe
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The European Physical Journal C,
2015 |
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[41]
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Confronting recent AMS-02 positron fraction and Fermi-LAT Extragalactic Gamma-Ray Background measurements with gravitino dark matter
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arXiv preprint arXiv:1501.05932,
2015 |
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[42]
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A Newtonian approach to the cosmological dark fluids
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Selected Topics of Computational and Experimental Fluid Mechanics,
2015 |
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[43]
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Dark matter annihilation in the first galaxy haloes
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Monthly Notices of the Royal Astronomical Society,
2015 |
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[44]
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Observation of the new line at~ 3.55 keV in X-ray spectra of galaxies and galaxy clusters
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arXiv preprint arXiv:1510.00358,
2015 |
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[45]
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Dark Matter Annihilation in the First Galaxy Halos
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arXiv preprint arXiv:1411.3783,
2014 |
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[46]
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Indirect searches for dark matter with the Fermi LAT instrument
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arXiv preprint arXiv:1404.2538,
2014 |
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[47]
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Constraining properties of dark matter particles using astrophysical data
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2013 |
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[48]
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Dark Matter Searches in the Gamma-ray Sky with the Fermi-LAT Space Telescope
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2013 |
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[49]
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Nonstandard approach to gravity for the dark sector of the Universe
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2013 |
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[50]
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Characterization of scintillating bolometers for particle detection and installation of a bolometric test facility in the University of Zaragoza
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Dissertation,
2013 |
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[51]
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Gamma ray signals from dark matter: Concepts, status and prospects
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Physics of the Dark Universe,
2012 |
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[52]
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Materia oscura escalar: implicaciones astrofısicas y formación de estructuras cósmicas TESIS
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2012 |
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[53]
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Constraints on mediator-based dark matter and scalar dark energy models using [square roots] s= 13 TeV pp collision data collected by the ATLAS …
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