Area of research
Nuclear and High Energy Physics · Astronomy and Astrophysics
Research interest
Research interests include Particle physics theoretical and experimental studies, Dark Matter and Cosmic Phenomena, Cosmology and Gravitation Theories, and Quantum Chromodynamics and Particle Interactions.
Linear Standard Model extensions in the SMEFT at one loop and Tera-Z
Accuracy complements energy: electroweak precision tests at Tera-Z
Non-thermal production of heavy vector dark matter from relativistic bubble walls
SMEFT analysis of m<sub>W</sub>
Light-by-light scattering at future $$e^+e^-$$ colliders
Light quark Yukawas in triboson final states
Top, Higgs, diboson and electroweak fit to the Standard Model effective field theory
Detecting Light Dark Matter via Inelastic Cosmic Ray Collisions
Light-by-Light Scattering Constraint on Born-Infeld Theory
Dimension-6 operator analysis of the CLIC sensitivity to new physics
Figshare 2017cited by 34position: last
Mixed heavy–light matching in the Universal One-Loop Effective Action
The price of an electroweak monopole
The effective Standard Model after LHC Run I
Comparing EFT and exact one-loop analyses of non-degenerate stops
Complete Higgs sector constraints on dimension-6 operators
Distinguishing ‘Higgs’ spin hypotheses using γγ and WW ∗ decays
Associated production evidence against Higgs impostors and anomalous couplings
Prima facie evidence against spin-two Higgs impostors
Global analysis of the Higgs candidate with mass ~ 125 GeV
Global analysis of experimental constraints on a possible Higgs-like particle with mass ∼ 125 GeV
A fast track towards the ‘Higgs’ spin and parity