A new wave of transients: supernova cosmology with the Rubin Observatory, 4MOST and Euclid
Lead Research Organisation:
LANCASTER UNIVERSITY
Department Name: Physics
Abstract
The work proposed here tackles some of the most important open questions in astrophysics, broadly centred on understanding the properties of the Universe itself. It is closely linked with the STFC Science Roadmap challenges pertaining to the roles and nature of dark matter and dark energy.
When the Rubin Observatory begins operation in early 2025, its Legacy Survey of Space and Time (LSST) will rapidly discover vast numbers of new astronomical transient objects. These are expected to be mostly supernovae (exploding stars) of various types. We propose to begin a new survey, TiDES (the Time Domain Extragalactic Survey), which will ultimately measure spectra of tens of thousands of transient objects discovered by LSST, plus a similar number of host galaxies of transients. The spectra provide two crucial pieces of information for each object: its classification (whether it is a supernova or not, and its type) and its and redshift. This information, along with brightness measurements from LSST, will enable the Type Ia supernovae to be used as "standard candles" for cosmology (standard candles are objects whose brightness is known and whose apparent brightness on the sky can be used as an indicator of their distance). The 5-year TiDES survey will create the largest, homogeneous Type Ia supernova sample by far. Simulations show that with this sample, we will measure the equation of state parameter (the ratio of pressure to density) for dark energy with only 2% uncertainty. This will be the tightest constraint to date and will strongly limit the range of theoretical explanations for the cause of the accelerating expansion of the universe.
To achieve these overall goals, we will initiate the TiDES survey using the new 4MOST instrument, which is currently under construction. One key objective of the proposed work is to commission 4MOST at the VISTA telescope in Chile and verify the science survey mechanism for TiDES. This will enable thousands of spectra of transient objects to be obtained during the grant period, already more than doubling the existing number of Type Ia supernovae for cosmology.
In addition to their use for classification of transients and redshift measurements, the spectra will enable further tests to be made, which are expected to lead to further improvement in cosmological constraints. For example, we aim to make quantitative measurements of features in the spectra of SNe Ia, some of which are known to correlate with peak brightness. Hence, by measuring these features we can further standardise the sample of Type Ia supernovae, improving their power as distance indicators.
A further avenue will be to use exquisite, wide-area imaging in optical and near infrared bands from the ESA Euclid mission, which is due to be launched in July 2023. This will provide a new route to study the host galaxies of the type Ia supernovae. Combined with the optical images from LSST and spectra of host galaxies obtained with 4MOST, measurements of host galaxy properties will be made (such as stellar mass, age, and shape). These improved measurements (compared to previous SN surveys) are expected to lead to reduced biases in measurements of cosmological parameters.
When the Rubin Observatory begins operation in early 2025, its Legacy Survey of Space and Time (LSST) will rapidly discover vast numbers of new astronomical transient objects. These are expected to be mostly supernovae (exploding stars) of various types. We propose to begin a new survey, TiDES (the Time Domain Extragalactic Survey), which will ultimately measure spectra of tens of thousands of transient objects discovered by LSST, plus a similar number of host galaxies of transients. The spectra provide two crucial pieces of information for each object: its classification (whether it is a supernova or not, and its type) and its and redshift. This information, along with brightness measurements from LSST, will enable the Type Ia supernovae to be used as "standard candles" for cosmology (standard candles are objects whose brightness is known and whose apparent brightness on the sky can be used as an indicator of their distance). The 5-year TiDES survey will create the largest, homogeneous Type Ia supernova sample by far. Simulations show that with this sample, we will measure the equation of state parameter (the ratio of pressure to density) for dark energy with only 2% uncertainty. This will be the tightest constraint to date and will strongly limit the range of theoretical explanations for the cause of the accelerating expansion of the universe.
To achieve these overall goals, we will initiate the TiDES survey using the new 4MOST instrument, which is currently under construction. One key objective of the proposed work is to commission 4MOST at the VISTA telescope in Chile and verify the science survey mechanism for TiDES. This will enable thousands of spectra of transient objects to be obtained during the grant period, already more than doubling the existing number of Type Ia supernovae for cosmology.
In addition to their use for classification of transients and redshift measurements, the spectra will enable further tests to be made, which are expected to lead to further improvement in cosmological constraints. For example, we aim to make quantitative measurements of features in the spectra of SNe Ia, some of which are known to correlate with peak brightness. Hence, by measuring these features we can further standardise the sample of Type Ia supernovae, improving their power as distance indicators.
A further avenue will be to use exquisite, wide-area imaging in optical and near infrared bands from the ESA Euclid mission, which is due to be launched in July 2023. This will provide a new route to study the host galaxies of the type Ia supernovae. Combined with the optical images from LSST and spectra of host galaxies obtained with 4MOST, measurements of host galaxy properties will be made (such as stellar mass, age, and shape). These improved measurements (compared to previous SN surveys) are expected to lead to reduced biases in measurements of cosmological parameters.
Organisations
- LANCASTER UNIVERSITY (Lead Research Organisation)
- National Aeronautics and Space Administration (NASA) (Collaboration)
- University of Illinois at Urbana-Champaign (Collaboration)
- OPEN UNIVERSITY (Collaboration)
- University of Chicago (Collaboration)
- University of Toronto (Collaboration)
- University of Portsmouth (Collaboration)
- University College London (Collaboration)
- Paris Institute of Astrophysics (Collaboration)
- DURHAM UNIVERSITY (Collaboration)
- Autonomous University of Barcelona (UAB) (Collaboration)
- University of Clermont Auvergne (Collaboration)
- Leibniz Association (Collaboration)
- UNIVERSITY OF EDINBURGH (Collaboration)
Publications
Deckers M
(2025)
ZTF SN Ia DR2: Secondary maximum in type Ia supernovae
in Astronomy & Astrophysics
Popovic B
(2025)
ZTF SN Ia DR2: Evidence of changing dust distribution with redshift using type Ia supernovae
in Astronomy & Astrophysics
Cuillandre J
(2025)
Euclid : Early Release Observations - Overview of the Perseus cluster and analysis of its luminosity and stellar mass functions?
in Astronomy & Astrophysics
Rigault M
(2025)
ZTF SN Ia DR2: Study of Type Ia supernova light-curve fits
in Astronomy & Astrophysics
Carreres B
(2025)
ZTF SN Ia DR2: Peculiar velocities' impact on the Hubble diagram
in Astronomy & Astrophysics
Cagliari M
(2024)
Euclid : Testing photometric selection of emission-line galaxy targets
in Astronomy & Astrophysics
Linke L
(2025)
Euclid and KiDS-1000: Quantifying the impact of source-lens clustering on cosmic shear analyses
in Astronomy & Astrophysics
Terwel J
(2025)
ZTF SN Ia DR2: Searching for late-time interaction signatures in Type Ia supernovae from the Zwicky Transient Facility
in Astronomy & Astrophysics
Massari D
(2025)
Euclid : Early Release Observations - Unveiling the morphology of two Milky Way globular clusters out to their periphery
in Astronomy & Astrophysics
Acevedo Barroso J
(2025)
Euclid : The Early Release Observations Lens Search Experiment
in Astronomy & Astrophysics
Burgaz U
(2026)
ZTF SN Ia DR2 follow-up: Exploring the origin of the Type Ia supernova host galaxy step through Si II velocities
in Astronomy & Astrophysics
Ruppin F
(2025)
ZTF SN Ia DR2: Impact of the galaxy cluster environment on the stretch distribution of Type Ia supernovae
in Astronomy & Astrophysics
Ginolin M
(2025)
ZTF SN Ia DR2: Colour standardisation of type Ia supernovae and its dependence on the environment
in Astronomy & Astrophysics
Aubert M
(2025)
ZTF SN Ia DR2: Exploring SN Ia properties in the vicinity of under-dense environments
in Astronomy & Astrophysics
Duffy C
(2025)
Euclid: Quick Data Release (Q1) -- Photometric studies of known transients
in Astronomy & Astrophysics
Dimitriadis G
(2025)
ZTF SN Ia DR2: The diversity and relative rates of the thermonuclear supernova population
in Astronomy & Astrophysics
Saifollahi T
(2025)
Euclid : Early Release Observations - Globular clusters in the Fornax galaxy cluster, from dwarf galaxies to the intracluster field
in Astronomy & Astrophysics
Pearce-Casey R
(2025)
Euclid : Searches for strong gravitational lenses using convolutional neural nets in Early Release Observations of the Perseus field
in Astronomy & Astrophysics
Kluge M
(2025)
Euclid : Early Release Observations - The intracluster light and intracluster globular clusters of the Perseus cluster
in Astronomy & Astrophysics
Burgaz U
(2025)
ZTF SN Ia DR2: Properties of the low-mass host galaxies of Type Ia supernovae in a volume-limited sample
in Astronomy & Astrophysics
Hunt L
(2025)
Euclid : Early Release Observations - Deep anatomy of nearby galaxies
in Astronomy & Astrophysics
Dhawan S
(2025)
ZTF SN Ia DR2: Cosmology-independent constraints on Type Ia supernova standardisation from supernova siblings
in Astronomy & Astrophysics
Saifollahi T
(2025)
Euclid : Early Release Observations - Interplay between dwarf galaxies and their globular clusters in the Perseus galaxy cluster
in Astronomy & Astrophysics
Cuillandre J
(2025)
Euclid : Early Release Observations - Programme overview and pipeline for compact- and diffuse-emission photometry
in Astronomy & Astrophysics
MartÃn E
(2025)
Euclid : Early Release Observations - A glance at free-floating newborn planets in the s Orionis cluster
in Astronomy & Astrophysics
| Description | 4MOST Consortium |
| Organisation | Leibniz Association |
| Department | Leibniz Institute for Astrophysics Potsdam |
| Country | Germany |
| Sector | Academic/University |
| PI Contribution | The consortium consists of 17 full members and 9 minor participants, some contributing to the hardware development, others to the software development, and almost all to the science case development. My collaboration (TiDES) has contributed financially towards the construction of the 4MOST instrument. We also contribute scientific planning effort. |
| Collaborator Contribution | Other institutions contribute financially as well as technically in the design and construction of the instrument. Other institutions also contribute to the scientific planning. |
| Impact | publications listed in appropriate grant report. |
| Start Year | 2015 |
| Description | Euclid Consortium |
| Organisation | Autonomous University of Barcelona (UAB) |
| Country | Spain |
| Sector | Academic/University |
| PI Contribution | Euclid is a planned ESA mission that will be launched in 2022 and will survey the sky with the main goals of measuring the cosmological parameters of the universe. From the ESA web site: "Nearly 1000 scientists from 100 institutes form the Euclid Consortium building the instruments and participating in the scientific harvest of the mission. The Euclid Consortium comprises scientists from 13 European countries: Austria, Denmark, France, Finland, Germany, Italy, Netherlands, Norway, Spain, Switzerland, Portugal, Romania and the UK. It also includes a US NASA team of scientists." Prof. Hook and Prof. Miller are members of the Euclid consortium. Prof Hook is one of two UK representatives on the Euclid Consortium Board. She work on aspects of the survey design connected to discovery and study of astrophysical transients. |
| Collaborator Contribution | The partners are involved in design of the mission and the survey, and planning the science program that it will carry out after launch. Some partners are involved in construction of instruments that will fly on the mission. |
| Impact | There have been many publications from the Euclid consortium as a whole. There are also outreach activities connected to the mission. |
| Start Year | 2010 |
| Description | Euclid Consortium |
| Organisation | National Aeronautics and Space Administration (NASA) |
| Department | Jet Propulsion Laboratory |
| Country | United States |
| Sector | Public |
| PI Contribution | Euclid is a planned ESA mission that will be launched in 2022 and will survey the sky with the main goals of measuring the cosmological parameters of the universe. From the ESA web site: "Nearly 1000 scientists from 100 institutes form the Euclid Consortium building the instruments and participating in the scientific harvest of the mission. The Euclid Consortium comprises scientists from 13 European countries: Austria, Denmark, France, Finland, Germany, Italy, Netherlands, Norway, Spain, Switzerland, Portugal, Romania and the UK. It also includes a US NASA team of scientists." Prof. Hook and Prof. Miller are members of the Euclid consortium. Prof Hook is one of two UK representatives on the Euclid Consortium Board. She work on aspects of the survey design connected to discovery and study of astrophysical transients. |
| Collaborator Contribution | The partners are involved in design of the mission and the survey, and planning the science program that it will carry out after launch. Some partners are involved in construction of instruments that will fly on the mission. |
| Impact | There have been many publications from the Euclid consortium as a whole. There are also outreach activities connected to the mission. |
| Start Year | 2010 |
| Description | Euclid Consortium |
| Organisation | Paris Institute of Astrophysics |
| Country | France |
| Sector | Academic/University |
| PI Contribution | Euclid is a planned ESA mission that will be launched in 2022 and will survey the sky with the main goals of measuring the cosmological parameters of the universe. From the ESA web site: "Nearly 1000 scientists from 100 institutes form the Euclid Consortium building the instruments and participating in the scientific harvest of the mission. The Euclid Consortium comprises scientists from 13 European countries: Austria, Denmark, France, Finland, Germany, Italy, Netherlands, Norway, Spain, Switzerland, Portugal, Romania and the UK. It also includes a US NASA team of scientists." Prof. Hook and Prof. Miller are members of the Euclid consortium. Prof Hook is one of two UK representatives on the Euclid Consortium Board. She work on aspects of the survey design connected to discovery and study of astrophysical transients. |
| Collaborator Contribution | The partners are involved in design of the mission and the survey, and planning the science program that it will carry out after launch. Some partners are involved in construction of instruments that will fly on the mission. |
| Impact | There have been many publications from the Euclid consortium as a whole. There are also outreach activities connected to the mission. |
| Start Year | 2010 |
| Description | Euclid UK |
| Organisation | Durham University |
| Country | United Kingdom |
| Sector | Academic/University |
| PI Contribution | Planning and developing algorithms for "Time Domain" studies and (in the implementation phase) Weak Lensing within the Euclid Ground Segment |
| Collaborator Contribution | Planning and developing algorithms for other aspects of the Euclid ground segment including weak lensing, galaxy clustering and galaxy photometric redshifts |
| Impact | Internal reports |
| Start Year | 2010 |
| Description | Euclid UK |
| Organisation | Open University |
| Country | United Kingdom |
| Sector | Academic/University |
| PI Contribution | Planning and developing algorithms for "Time Domain" studies and (in the implementation phase) Weak Lensing within the Euclid Ground Segment |
| Collaborator Contribution | Planning and developing algorithms for other aspects of the Euclid ground segment including weak lensing, galaxy clustering and galaxy photometric redshifts |
| Impact | Internal reports |
| Start Year | 2010 |
| Description | Euclid UK |
| Organisation | University College London |
| Department | Department of Space and Climate Physics (MSSL) |
| Country | United Kingdom |
| Sector | Academic/University |
| PI Contribution | Planning and developing algorithms for "Time Domain" studies and (in the implementation phase) Weak Lensing within the Euclid Ground Segment |
| Collaborator Contribution | Planning and developing algorithms for other aspects of the Euclid ground segment including weak lensing, galaxy clustering and galaxy photometric redshifts |
| Impact | Internal reports |
| Start Year | 2010 |
| Description | Euclid UK |
| Organisation | University of Edinburgh |
| Country | United Kingdom |
| Sector | Academic/University |
| PI Contribution | Planning and developing algorithms for "Time Domain" studies and (in the implementation phase) Weak Lensing within the Euclid Ground Segment |
| Collaborator Contribution | Planning and developing algorithms for other aspects of the Euclid ground segment including weak lensing, galaxy clustering and galaxy photometric redshifts |
| Impact | Internal reports |
| Start Year | 2010 |
| Description | Euclid UK |
| Organisation | University of Portsmouth |
| Department | Institute of Cosmology and Gravitation (ICG) |
| Country | United Kingdom |
| Sector | Academic/University |
| PI Contribution | Planning and developing algorithms for "Time Domain" studies and (in the implementation phase) Weak Lensing within the Euclid Ground Segment |
| Collaborator Contribution | Planning and developing algorithms for other aspects of the Euclid ground segment including weak lensing, galaxy clustering and galaxy photometric redshifts |
| Impact | Internal reports |
| Start Year | 2010 |
| Description | LSST Dark Energy Science Collaboration |
| Organisation | University of Chicago |
| Country | United States |
| Sector | Academic/University |
| PI Contribution | Planning survey strategies for the future Large Synoptic Survey Telescope (LSST) surveys via simulations and calculations. Also developing follow-up strategies for LSST transients, for the purposes of Dark Energy science in particular. Testing transient classification software under various assumptions for training samples. |
| Collaborator Contribution | Simulations of the LSST data, planning of survey strategies, software for classification of transients. Partners have also help review papers prior to submission to journals. |
| Impact | Papers (non-refereed) that have resulted include: Enhancing LSST Science with Euclid Synergy (2019), a white paper by the Tri-Agency Working Group (TAG), P. Capak et al. The LSST Dark Energy Science Collaboration (DESC) Science Requirements Document (2018), The LSST Dark Energy Science Collaboration; Mandelbaum, R. et al. Optimizing the LSST Observing Strategy for Dark Energy Science: DESC Recommendations for the Wide-Fast-Deep Survey (2018) Lochner M. et al Optimizing the LSST Observing Strategy for Dark Energy Science: DESC Recommendations for the Deep Drilling Fields and other Special Programs (2018), Scolnic, D. et al |
| Start Year | 2015 |
| Description | LSST Dark Energy Science Collaboration |
| Organisation | University of Clermont Auvergne |
| Country | France |
| Sector | Academic/University |
| PI Contribution | Planning survey strategies for the future Large Synoptic Survey Telescope (LSST) surveys via simulations and calculations. Also developing follow-up strategies for LSST transients, for the purposes of Dark Energy science in particular. Testing transient classification software under various assumptions for training samples. |
| Collaborator Contribution | Simulations of the LSST data, planning of survey strategies, software for classification of transients. Partners have also help review papers prior to submission to journals. |
| Impact | Papers (non-refereed) that have resulted include: Enhancing LSST Science with Euclid Synergy (2019), a white paper by the Tri-Agency Working Group (TAG), P. Capak et al. The LSST Dark Energy Science Collaboration (DESC) Science Requirements Document (2018), The LSST Dark Energy Science Collaboration; Mandelbaum, R. et al. Optimizing the LSST Observing Strategy for Dark Energy Science: DESC Recommendations for the Wide-Fast-Deep Survey (2018) Lochner M. et al Optimizing the LSST Observing Strategy for Dark Energy Science: DESC Recommendations for the Deep Drilling Fields and other Special Programs (2018), Scolnic, D. et al |
| Start Year | 2015 |
| Description | LSST Dark Energy Science Collaboration |
| Organisation | University of Illinois at Urbana-Champaign |
| Country | United States |
| Sector | Academic/University |
| PI Contribution | Planning survey strategies for the future Large Synoptic Survey Telescope (LSST) surveys via simulations and calculations. Also developing follow-up strategies for LSST transients, for the purposes of Dark Energy science in particular. Testing transient classification software under various assumptions for training samples. |
| Collaborator Contribution | Simulations of the LSST data, planning of survey strategies, software for classification of transients. Partners have also help review papers prior to submission to journals. |
| Impact | Papers (non-refereed) that have resulted include: Enhancing LSST Science with Euclid Synergy (2019), a white paper by the Tri-Agency Working Group (TAG), P. Capak et al. The LSST Dark Energy Science Collaboration (DESC) Science Requirements Document (2018), The LSST Dark Energy Science Collaboration; Mandelbaum, R. et al. Optimizing the LSST Observing Strategy for Dark Energy Science: DESC Recommendations for the Wide-Fast-Deep Survey (2018) Lochner M. et al Optimizing the LSST Observing Strategy for Dark Energy Science: DESC Recommendations for the Deep Drilling Fields and other Special Programs (2018), Scolnic, D. et al |
| Start Year | 2015 |
| Description | LSST Dark Energy Science Collaboration |
| Organisation | University of Toronto |
| Country | Canada |
| Sector | Academic/University |
| PI Contribution | Planning survey strategies for the future Large Synoptic Survey Telescope (LSST) surveys via simulations and calculations. Also developing follow-up strategies for LSST transients, for the purposes of Dark Energy science in particular. Testing transient classification software under various assumptions for training samples. |
| Collaborator Contribution | Simulations of the LSST data, planning of survey strategies, software for classification of transients. Partners have also help review papers prior to submission to journals. |
| Impact | Papers (non-refereed) that have resulted include: Enhancing LSST Science with Euclid Synergy (2019), a white paper by the Tri-Agency Working Group (TAG), P. Capak et al. The LSST Dark Energy Science Collaboration (DESC) Science Requirements Document (2018), The LSST Dark Energy Science Collaboration; Mandelbaum, R. et al. Optimizing the LSST Observing Strategy for Dark Energy Science: DESC Recommendations for the Wide-Fast-Deep Survey (2018) Lochner M. et al Optimizing the LSST Observing Strategy for Dark Energy Science: DESC Recommendations for the Deep Drilling Fields and other Special Programs (2018), Scolnic, D. et al |
| Start Year | 2015 |
