His primary scientific interests are in Particle physics, Physics beyond the Standard Model, CP violation, Standard Model and Large Hadron Collider. His study in Higgs boson, Supersymmetry, Electroweak interaction, Hadron and Unitarity falls within the category of Particle physics. He combines subjects such as Minimal Supersymmetric Standard Model, Flavour, Observable, Hamiltonian and Collider with his study of Physics beyond the Standard Model.
Luca Silvestrini has included themes like Lattice field theory, Sfermion and Cabibbo–Kobayashi–Maskawa matrix in his CP violation study. His Standard Model research focuses on subjects like Mixing, which are linked to Physical quantity and Amplitude. His study in the field of Top quark and Future Circular Collider also crosses realms of Upgrade and Conceptual design.
Luca Silvestrini spends much of his time researching Particle physics, Physics beyond the Standard Model, CP violation, Standard Model and Supersymmetry. His research in Hadron, Unitarity, Flavour, Electroweak interaction and Higgs boson are components of Particle physics. His work in Unitarity tackles topics such as Lattice QCD which are related to areas like Lattice field theory.
His work carried out in the field of Physics beyond the Standard Model brings together such families of science as Effective field theory, Observable, Large Hadron Collider, Quark and Collider. His CP violation research includes elements of Meson, Quantum chromodynamics and Asymmetry. In his study, Amplitude is inextricably linked to Mixing, which falls within the broad field of Standard Model.
His scientific interests lie mostly in Particle physics, Physics beyond the Standard Model, Hadron, Effective field theory and Observable. His study in Electroweak interaction, Flavour, Lattice QCD, Unitarity and Charm is carried out as part of his Particle physics studies. The concepts of his Unitarity study are interwoven with issues in Hamiltonian and Standard Model.
His Physics beyond the Standard Model study incorporates themes from Standard Model, CP violation, Large Hadron Collider, Collider and Higgs boson. His work deals with themes such as Amplitude and Quantum chromodynamics, which intersect with CP violation. His Effective field theory research is multidisciplinary, relying on both Quark, Sigma and Lepton.
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A complete analysis of FCNC and CP constraints in general SUSY extensions of the standard model
F. Gabbiani;E. Gabrielli;A. Masiero;L. Silvestrini.
Nuclear Physics (1996)
Handbook of LHC Higgs cross sections: 4. Deciphering the nature of the Higgs sector
D. de Florian;C. Grojean;F. Maltoni;C. Mariotti.
CERN Yellow Reports: Monographs; (2016) (2016)
Universal unitarity triangle and physics beyond the standard model
A. J. Buras;Paolo Gambino;M. Gorbahn;S. Jäger.
Physics Letters B (2001)
First look at the physics case of TLEP
M. Bicer;H. Duran Yildiz;I. Yildiz;G. Coignet.
Journal of High Energy Physics (2014)
Handbook of LHC Higgs Cross Sections: 4. Deciphering the Nature of the Higgs Sector
D. de Florian;C. Grojean;F. Maltoni;C. Mariotti.
arXiv: High Energy Physics - Phenomenology (2016)
Delta M(K) and epsilon(K) in SUSY at the next-to-leading order
Marco Ciuchini;Livio Conti;Andrea Donini;Enrico Franco.
Journal of High Energy Physics (1998)
Model-independent constraints on ΔF = 2 operators and the scale of new physics
M. Bona;M. Ciuchini;E. Franco;V. Lubicz.
Journal of High Energy Physics (2008)
SUSY Les Houches Accord 2
Benjamin C Allanach;Csaba Balazs;Genevieve Belanger;M Bernhardt.
Computer Physics Communications (2009)
The Belle II Physics Book
E. Kou;P. Urquijo;W. Altmannshofer;F. Beaujean.
Progress of Theoretical and Experimental Physics (2019)
The unitarity triangle fit in the standard model and hadronic parameters from lattice QCD: a reappraisal after the measurements of Δms and BR(B→τντ)
Marcella Bona;Marco Ciuchini;Enrico Franco.
Journal of High Energy Physics (2006)
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