Simulations of structure formation and feedback at high-redshift
Lead Research Organisation:
University of Sussex
Department Name: Sch of Mathematical & Physical Sciences
Abstract
tbc
Publications

Lewis Joseph S. W.
(2022)
The short ionizing photon mean free path at z=6 in Cosmic Dawn III, a new fully-coupled radiation-hydrodynamical simulation of the Epoch of Reionization
in arXiv e-prints
Studentship Projects
Project Reference | Relationship | Related To | Start | End | Student Name |
---|---|---|---|---|---|
ST/N504452/1 | 30/09/2015 | 30/03/2021 | |||
2131620 | Studentship | ST/N504452/1 | 30/09/2018 | 30/03/2022 | Luke Conaboy |
ST/R505146/1 | 30/09/2017 | 29/09/2021 | |||
2131620 | Studentship | ST/R505146/1 | 30/09/2018 | 30/03/2022 | Luke Conaboy |
ST/S505766/1 | 30/09/2018 | 29/09/2022 | |||
2131620 | Studentship | ST/S505766/1 | 30/09/2018 | 30/03/2022 | Luke Conaboy |
Description | Improved simulations of the formation of the first galaxies. We have developed and tested new methodologies for improving the accuracy of these simulations, as well as exploring the effect of incorporating radiation into these simulations. |
Exploitation Route | Our methodology could be used by other researchers to study the effect of relative velocities between gas and dark matter in the early universe. |
Sectors | Other |
Description | Cosmic Dawn collaboration |
Organisation | Observatory of Strasbourg |
Country | France |
Sector | Public |
PI Contribution | Structure finding analysis of the latest extremely high-resolution Cosmic Dawn simulation (CoDa III). |
Collaborator Contribution | Calibration, running and further analysis of the CoDa III simulation. |
Impact | Paper: The short ionizing photon mean free path at z=6 in Cosmic Dawn III, a new fully-coupled radiation-hydrodynamical simulation of the Epoch of Reionization |
Start Year | 2019 |