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Causality, unitarity and symmetry in effective field theory

Timothy Trott

2021Journal of High Energy Physics43 citationsDOIOpen Access PDF

Abstract

A bstract Sum rules in effective field theories, predicated upon causality, place restrictions on scattering amplitudes mediated by effective contact interactions. Through unitarity of the S -matrix, these imply that the size of higher dimensional corrections to transition amplitudes between different states is bounded by the strength of their contributions to elastic forward scattering processes. This places fundamental limits on the extent to which hypothetical symmetries can be broken by effective interactions. All analysis is for dimension 8 operators in the forward limit. Included is a thorough derivation of all positivity bounds for a chiral fermion in SU(2) and SU(3) global symmetry representations resembling those of the Standard Model, general bounds on flavour violation, new bounds for interactions between particles of different spin, inclusion of loops of dimension 6 operators and illustration of the resulting strengthening of positivity bounds over tree-level expectations, a catalogue of supersymmetric effective interactions up to mass dimension 8 and 4 legs and the demonstration that supersymmetry unifies the positivity theorems as well as the new bounds.

Topics & Concepts

UnitarityPhysicsEffective field theoryScattering amplitudeTheoretical physicsSupersymmetryDimension (graph theory)Symmetry (geometry)Field (mathematics)CrossingGlobal symmetryFermionHomogeneous spaceCritical dimensionScatteringMathematical physicsBounded functionParticle physicsAmplitudeBound stateStandard Model (mathematical formulation)Quantum mechanicsField theory (psychology)Extra dimensionsEffective actionSymmetry breakingQuantum field theoryQuantum electrodynamicsSpontaneous symmetry breakingElastic scatteringPhysics beyond the Standard ModelQuantum Chromodynamics and Particle InteractionsBlack Holes and Theoretical PhysicsQuantum and Classical Electrodynamics
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