5–9 Jul 2026
University of Canterbury
Pacific/Auckland timezone

Mapping the nanohertz gravitational-wave sky to reveal the origin of the stochastic background

9 Jul 2026, 13:30
20m
Room E6 (Rātā / Engineering Core Building, University of Canterbury)

Room E6

Rātā / Engineering Core Building, University of Canterbury

63 Creyke Road, Ilam, Christchurch 8041, New Zealand
Parallel Session Talk Parallel sessions

Speaker

Eric Thrane (Monash University)

Description

A key question has emerged in the wake of recent observations in pulsar timing astronomy: what is the origin of the nanohertz gravitational-wave background? If the background can be firmly linked to the mergers of supermassive binary black holes, there will be important implications for cosmology: from the evolution of supermassive black holes over cosmic time to the formation of galaxies. On the other hand, if the binary black hole hypothesis can be falsified, this would imply new fundamental physics such as a phase transition in the early Universe. In this talk I argue that mapping the gravitational-wave sky is our most reliable method for understanding the origin of the nanohertz background. I describe recent advances in "phase-coherent mapping" that will help us to understand the origin of the nanohertz background.

Research Area Gravitational waves: Pulsar Timing Arrays

Author

Eric Thrane (Monash University)

Presentation materials