Cliquer pour ajouter une information temporelle

Exploring the early universe with gravitational waves and primordial magnetic fields

977 Vues
jeudi, 27 octobre 2022

Document Téléchargé

The title is: 'Exploring the early universe with gravitational waves and primordial magnetic fields'

The main goal of the project is to use gravitational astronomy to improve our understanding of the early universe at its highest energy scales. We study the generation of cosmological gravitational wave (GW) backgrounds produced by primordial turbulence in the early universe. In particular, we aim to analyse different mechanisms leading to the production of turbulence and magnetic fields. Both phenomena produce inevitably magnetohydrodynamic (MHD) turbulence in the primordial plasma due to the large induced velocities and the high conductivity of the early universe, and it requires fully numerical simulations of the velocity and magnetic field dynamics to accurately model the generated stochastic GW background and the posterior evolution of the magnetic field up to our present time. Hence, to perform the analyses, we will be combining theoretical calculations with large resolution numerical simulations of MHD turbulence coupled to linearized general relativity, using the open-source Pencil Code, at high-performance computing infrastructures. Using the results of such simulations, we aim to develop a template for the production of GWs due to MHD turbulence that is of paramount importance for the future successful detection of early universe signals with the Laser Interferometer Space Antenna (LISA), pulsar timing arrays, and other GW detectors. Additionally, primordial magnetic fields can be probed by observations from distant TeV gamma-ray sources using the Fermi Observatory and, in the near future, the Cerenkov Telescope Array, allowing us to put lower limits on the strength of the relics of primordial magnetic fields. Such multi-messenger detections can shed light on our understanding of the early universe physics and provide an answer to fundamental open questions in cosmology like the baryon asymmetry problem, the electroweak hierarchy problem, or the nature of dark matter, by directly probing the physics of the early universe, e.g., first-order phase transitions, parity-odd violation processes, or axion fields.
Please sign in to add a comment.
Collection

Capsules des Chercheur-ses 2022/2023

1

Exploring the early universe with gravitational waves and primordial magnetic fields

Alberto Roper Pol
jeudi 27 octobre 2022
2

Translational Dynamic Covalent Exchange Cascades

Stefan Matile
lundi 28 novembre 2022
3

The Fabric of Profit

Mary O Sullivan
vendredi 2 décembre 2022
4

Improvement of Autobiographical Memory In Mild Cognitive Impairment using transcranial alternating current stimulation (tACS) guided by high-density EEG and MRI

Lucie Bréchet
mardi 20 décembre 2022
5

Harnessing the beneficial non- specific effects of early measles vaccination in children

Laure Pittet
mercredi 21 décembre 2022
6

Quantum Matter with a Twist - The Interplay of Correlations and Topology in Moiré Materials

Louk Rademaker
mercredi 31 mai 2023
7

Disentangling linguistic intelligence: automatic generalisation of structure and meaning across languages

Paola Merlot
mercredi 31 mai 2023
8

Magneto-opto-electronics of novel 2D magnetic semiconductors

Dmitry Lebedev
lundi 12 juin 2023
9

Emanuela Ceva, The margins of Corruption

Emanuela Ceva
jeudi 19 octobre 2023
10

Ilaria Sani, In the object’s shoes: Unveiling a ventro-temporal hub for object-centered space and object-based attention

Ilaria Sani
mercredi 25 octobre 2023
11

Charlotte Aumeier

Charlotte Aumeier
lundi 30 octobre 2023
12

Towards and ecological characterization of affective and sleep comorbidities in ADHD through temporal network analysis.

Corrado Sandini
jeudi 21 décembre 2023
13

Monika Gjorgjieva, Faculty of Medicine - Department of Cell physiology and Metabolism

Monika Gjorgjieva
mercredi 11 décembre 2024