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Primordial non-Gaussianity as a saviour for PBH overproduction in SIGWs generated by pulsar timing arrays for Galileon inflation

Sayantan Choudhury, Kritartha Dey, Ahaskar Karde, Sudhakar Panda, M. Sami

2024Physics Letters B36 citationsDOIOpen Access PDF

Abstract

We investigate the explicit role of negative local non-Gaussianity, fNL, in suppressing the abundance of primordial black holes (PBHs) in the single-field model of Galileon inflation. PBH formation requires significantly enhancing the scalar power spectrum, which greatly affects their abundance. The associated frequencies in the nHz regime are also sensitive to the generation of scalar-induced gravitational waves (SIGWs) which may explain the current data from the pulsar timing arrays (PTAs). Our analysis using the threshold statistics on the compaction function demonstrates that Galileon theory not only avoids PBH overproduction using the curvature perturbation enhancements that give fNL∼O(−6), but also generates SIGWs that conform well with the PTA data.

Topics & Concepts

PhysicsInflation (cosmology)Non-GaussianityPulsarOverproductionAstrophysicsParticle physicsAstronomyCosmic microwave backgroundQuantum mechanicsNuclear magnetic resonanceEnzymeAnisotropyCosmology and Gravitation TheoriesPulsars and Gravitational Waves ResearchRadio Astronomy Observations and Technology
Primordial non-Gaussianity as a saviour for PBH overproduction in SIGWs generated by pulsar timing arrays for Galileon inflation | Litcius