We develop an effective field theory of a generic massive particle of any spin and, as an example, apply this to study higher-spin dark matter (DM). Our formalism does not introduce unphysical degrees of freedom, thus avoiding the potential inconsistencies that may appear in other field-theoretical descriptions of higher spin. Being a useful reformulation of the Weinberg’s original idea, the proposed effective field theory allows for consistent computations of physical observables for general-spin particles, although it does not admit a Lagrangian description. As a specific realization, we explore the phenomenology of a general-spin singlet with Z 2 -symmetric Higgs portal couplings, a setup which automatically arises for high spin, and...
Determination of the nature of Dark Matter (DM) is one of the most fundamental problems of particle ...
We investigate the non-relativistic reduction of simplified models for spin 1 dark matter (DM) with ...
© 2017 Dr. Rebecca Kate LeaneThe fundamental nature of dark matter (DM) remains unknown. In this the...
Using an effective field theory approach for higher-spin fields, we derive the interactions of colou...
International audienceWe apply the on-shell amplitude techniques in the domain of dark matter. Witho...
We apply the on-shell amplitude techniques in the domain of dark matter. Without evoking fields and ...
We apply the on-shell amplitude techniques in the domain of dark matter. Without evoking fields and ...
We investigate the feasibility of dark matter particles existing in the Universe as a spin-$\frac{1}...
We show that nonperturbative production of massive higher spin fields from vacuum will accompany the...
New physics scenarios beyond the Standard Model predict the existence of milli-charged particles. So...
The Standard Model Effective Field Theory (SMEFT) and the Low Energy Effective Field Theory (LEFT) c...
The Standard Model Effective Field Theory (SMEFT) and the Low Energy Effective Field Theory (LEFT) c...
In this work we complete a model independent analysis of dark matter constraining its mass and inter...
We discuss the limitations to the use of the effective field theory approach to study dark matter at...
New physics scenarios beyond the Standard Model predict the existence of milli-charged particles. So...
Determination of the nature of Dark Matter (DM) is one of the most fundamental problems of particle ...
We investigate the non-relativistic reduction of simplified models for spin 1 dark matter (DM) with ...
© 2017 Dr. Rebecca Kate LeaneThe fundamental nature of dark matter (DM) remains unknown. In this the...
Using an effective field theory approach for higher-spin fields, we derive the interactions of colou...
International audienceWe apply the on-shell amplitude techniques in the domain of dark matter. Witho...
We apply the on-shell amplitude techniques in the domain of dark matter. Without evoking fields and ...
We apply the on-shell amplitude techniques in the domain of dark matter. Without evoking fields and ...
We investigate the feasibility of dark matter particles existing in the Universe as a spin-$\frac{1}...
We show that nonperturbative production of massive higher spin fields from vacuum will accompany the...
New physics scenarios beyond the Standard Model predict the existence of milli-charged particles. So...
The Standard Model Effective Field Theory (SMEFT) and the Low Energy Effective Field Theory (LEFT) c...
The Standard Model Effective Field Theory (SMEFT) and the Low Energy Effective Field Theory (LEFT) c...
In this work we complete a model independent analysis of dark matter constraining its mass and inter...
We discuss the limitations to the use of the effective field theory approach to study dark matter at...
New physics scenarios beyond the Standard Model predict the existence of milli-charged particles. So...
Determination of the nature of Dark Matter (DM) is one of the most fundamental problems of particle ...
We investigate the non-relativistic reduction of simplified models for spin 1 dark matter (DM) with ...
© 2017 Dr. Rebecca Kate LeaneThe fundamental nature of dark matter (DM) remains unknown. In this the...