Graph explorer

Cosmological Collider Physics

We study the imprint of new particles on the primordial cosmological fluctuations. New particles with masses comparable to the Hubble scale produce a distinctive signature on the non-gaussianities. This feature arises in the squeezed limit of the correlation functions of primordial fluctuations. It consists of particular power law, or oscillatory, behavior that contains information about the masses of new particles. There is an angular dependence that gives information about the spin. We also have a relative phase that crucially depends on the quantum mechanical nature of the fluctuations and can be viewed as arising from the interference between two processes. While some of these features were noted before in the context of specific inflationary scenarios, here we give a general description emphasizing the role of symmetries in determining the final result.

6 nodes7 linksoverview mapCosmological Collider Physics
6 nodes7 links
Cosmological Collider Physics6 visible / 6 total nodes / 8 links
Co-authorshipAuthorshipAuthorshipTopic signalTopic signalTopic signalRelated contextRelated contextWCosmological Collider Physicspreprint / 2015ANima Arkani-HamedResearcherAJuan MaldacenaResearcherThep-ph13193 worksTastro-ph.CO6979 worksThep-th13268 works
PaperSignal 105 links

Cosmological Collider Physics

preprint / 2015

Open