F. Grosa

ORCID: 0000-0002-1469-9022
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About
Contact & Profiles
Research Areas
  • High-Energy Particle Collisions Research
  • Particle physics theoretical and experimental studies
  • Quantum Chromodynamics and Particle Interactions
  • Particle Detector Development and Performance
  • Nuclear reactor physics and engineering
  • Dark Matter and Cosmic Phenomena
  • Cosmology and Gravitation Theories
  • Statistical Methods and Bayesian Inference
  • Nuclear physics research studies
  • Stochastic processes and statistical mechanics
  • Pulsars and Gravitational Waves Research
  • CCD and CMOS Imaging Sensors
  • Superconducting Materials and Applications
  • Computational Physics and Python Applications
  • Radiation Detection and Scintillator Technologies
  • Solar and Space Plasma Dynamics
  • Theoretical and Computational Physics
  • Spectroscopy Techniques in Biomedical and Chemical Research
  • advanced mathematical theories
  • Photocathodes and Microchannel Plates
  • Pediatric Urology and Nephrology Studies
  • Statistical Mechanics and Entropy
  • Black Holes and Theoretical Physics
  • Muon and positron interactions and applications
  • Particle Accelerators and Free-Electron Lasers

European Organization for Nuclear Research
2021-2025

Universidad Nacional Autónoma de México
2017-2024

A. Alikhanyan National Laboratory
2017-2024

Istituto Nazionale di Fisica Nucleare, Sezione di Torino
2016-2023

Polytechnic University of Turin
2017-2021

Technical University of Munich
2021

Istituto Nazionale di Fisica Nucleare
2021

Central China Normal University
2019-2020

Budker Institute of Nuclear Physics
2020

Aligarh Muslim University
2020

The future opportunities for high-density QCD studies with ion and proton beams at the LHC are presented. Four major scientific goals identified: characterisation of macroscopic long wavelength Quark-Gluon Plasma (QGP) properties unprecedented precision, investigation microscopic parton dynamics underlying QGP properties, development a unified picture particle production from small (pp) to large (nucleus--nucleus) systems, exploration densities in nuclei broad ($x$, $Q^2$) kinematic range...

10.2172/1501772 preprint EN 2019-03-15

A novel approach for designing the next generation of vertex detectors foresees to employ wafer-scale sensors that can be bent truly cylindrical geometries after thinning them thicknesses 20-40$\mu$m. To solidify this concept, feasibility operating MAPS was demonstrated using 1.5$\times$3cm ALPIDE chips. Already with their thickness 50$\mu$m, they successfully radii about 2cm without any signs mechanical or electrical damage. During a subsequent characterisation 5.4GeV electron beam, it...

10.48550/arxiv.2105.13000 preprint EN cc-by arXiv (Cornell University) 2021-01-01

Heavy quarks are sensitive probes of the colour-deconfined medium formed in ultra-relativistic heavy-ion collisions, Quark-Gluon Plasma (QGP). The ALICE Collaboration measured production ${\rm D}^0$, D}^+$, D}^{*+}$ and D_s}^+$ mesons Pb-Pb collisions at $\sqrt{s_{\rm NN}}=5.02~{\rm TeV}$. properties in-medium energy loss possible modification charm-quark hadronisation mechanism investigated via measurement nuclear factor ($R_{\rm AA}$) non-strange strange D mesons. In mid-central D-meson...

10.22323/1.345.0138 preprint EN cc-by-nc-nd Proceedings of International Conference on Hard and Electromagnetic Probes of High-Energy Nuclear Collisions — PoS(HardProbes2018) 2019-01-11

Heavy-flavour hadrons are recognised as a powerful probe for the characterisation of deconfined medium created in heavy-ion collisions, Quark-Gluon Plasma (QGP). The ALICE Collaboration measured production ${\rm D}^{0}$, D}^{+}$, D}^*$ and D_s}^{+}$ mesons Pb-Pb collisions at $\sqrt{s_{\rm NN}}=5.02~{\rm TeV}$. measurement nuclear modification factor ($R_{\rm AA}$) provides strong evidence in-medium parton energy loss. comparison between non-strange D-meson $R_{\rm AA}$ can help to study...

10.1051/epjconf/201817118007 article EN cc-by EPJ Web of Conferences 2018-01-01

Heavy flavours, i.e. charm and beauty quarks, are recognised as excellent probes of the colour-deconfined medium created in ultrarelativistic heavy–ion collisions, quark–gluon plasma (QGP). In this document, most recent measurements heavy-flavour hadrons heavy-ion collisions summarised. Measurements nuclear modification factors angular anisotropies open reported to investigate properties heavy-quark interactions QGP. A particular focus is given measurement baryons with strangequark content...

10.1051/epjconf/202429601029 article EN cc-by EPJ Web of Conferences 2024-01-01

Heavy quarks are sensitive probes of the colour-deconfined medium formed in ultra-relativistic heavy-ion collisions, Quark-Gluon Plasma (QGP). The ALICE Collaboration measured production $\rm D^0$, D^+$, and D^{*+}$ mesons Pb-Pb collisions at $\sqrt{s_{\rm NN}}=5.02$ TeV. properties in-medium energy loss investigated via measurement nuclear modification factor ($R_{\rm AA}$) non-strange D mesons. D-meson transverse momentum ($p_{\rm T}$) distributions inside jet is studied tagged $R_{\rm...

10.48550/arxiv.1909.06562 preprint EN other-oa arXiv (Cornell University) 2019-01-01

Heavy quarks are sensitive probes of the colour-deconfined medium formed in ultra-relativistic heavy-ion collisions, Quark--Gluon Plasma (QGP). The ALICE Collaboration measured production $\rm D^0$, D^+$, and D^{*+}$ mesons Pb-Pb$ collisions at $\sqrt{s_{\rm NN}}=5.02$ TeV. properties in-medium energy loss investigated via measurement nuclear modification factor ($R_{\rm AA}$) non-strange D mesons. D-meson transverse momentum ($p_{\rm T}$) distributions inside jet is studied tagged $R_{\rm...

10.22323/1.364.0280 article EN cc-by-nc-nd Proceedings of The European Physical Society Conference on High Energy Physics — PoS(EPS-HEP2021) 2020-10-09
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