Projects per year
Abstract
Gravitational waves (GWs) were recently detected for the first time. This revolutionary discovery opens a new way of learning about particle physics through GWs from first-order phase transitions (FOPTs) in the early Universe. FOPTs could occur when new fundamental symmetries are spontaneously broken down to the Standard Model and are a vital ingredient in solutions of the matter anti-matter asymmetry problem. The purpose of our work is to review the path from a particle physics model to GWs, which contains many specialized parts, so here we provide a timely review of all the required steps, including: (i) building a finite-temperature effective potential in a particle physics model and checking for FOPTs; (ii) computing transition rates; (iii) analyzing the dynamics of bubbles of true vacuum expanding in a thermal plasma; (iv) characterizing a transition using thermal parameters; and, finally, (v) making predictions for GW spectra using the latest simulations and theoretical results and considering the detectability of predicted spectra at future GW detectors. For each step we emphasize the subtleties, advantages and drawbacks of different methods, discuss open questions and review the state-of-art approaches available in the literature. This provides everything a particle physicist needs to begin exploring GW phenomenology.
Original language | English |
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Article number | 104094 |
Number of pages | 92 |
Journal | Progress in Particle and Nuclear Physics |
Volume | 135 |
DOIs | |
Publication status | Published - Feb 2024 |
Keywords
- Cosmological phase transitions
- Gravitational waves
- Particle physics
Projects
- 3 Finished
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Electroweak phase transition: A cosmological window to new particle physics
Kobakhidze, A. (Primary Chief Investigator (PCI)), Balazs, C. (Chief Investigator (CI)), Ramsey-Musolf, M. J. (Partner Investigator (PI)) & Fowlie, A. (Partner Investigator (PI))
13/12/21 → 12/12/24
Project: Research
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Optimising the search for the next discovery in particle physics
White, M. J. (Primary Chief Investigator (PCI)), Balazs, C. (Chief Investigator (CI)), Williams, A. G. (Chief Investigator (CI)), Athron, P. (Chief Investigator (CI)), Roos, L. (Partner Investigator (PI)) & Parker, M. A. (Partner Investigator (PI))
1/01/18 → 31/12/20
Project: Research
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Understanding new physics through flexible calculations
Athron, P. (Primary Chief Investigator (PCI))
ARC - Australian Research Council, Monash University
1/01/17 → 31/12/21
Project: Research