Area of research
Nuclear and High Energy Physics · Astronomy and Astrophysics
Research interest
Research interests include Particle physics theoretical and experimental studies, Quantum Chromodynamics and Particle Interactions, Black Holes and Theoretical Physics, and High-Energy Particle Collisions Research.
Two loop renormalization of scalar theories using a geometric approach
Two loop renormalization of scalar theories using a geometric approach
Renormalization of the Standard Model Effective Field Theory from geometry
An algebraic formula for two loop renormalization of scalar quantum field theory
An algebraic formula for two loop renormalization of scalar quantum field theory
Effective field theory interpretation of lepton magnetic and electric dipole moments
Low-energy effective field theory below the electroweak scale: operators and matching
Low-energy effective field theory below the electroweak scale: anomalous dimensions
A geometric formulation of Higgs Effective Field Theory: Measuring the curvature of scalar field space
Geometry of the scalar sector
Analysis of general power counting rules in effective field theory
Renormalization group evolution of the Standard Model dimension six operators III: gauge coupling dependence and phenomenology
Renormalization group evolution of the Standard Model dimension six operators II: Yukawa dependence
Renormalization group evolution of dimension-six baryon number violating operators
Holomorphy without supersymmetry in the Standard Model Effective Field Theory
Renormalization group evolution of the standard model dimension six operators. I: formalism and λ dependence
Renormalization group scaling of Higgs operators and h → γγ decay
On gauge invariance and minimal coupling
Naive dimensional analysis counting of gauge theory amplitudes and anomalous dimensions