The Hubble constant (H0) is one of the fundamental parameters in cosmology, but there is a heated debate around the > 4σ tension between the local Cepheid distance ladder and the early Universe measurements. Strongly lensed Type Ia supernovae (LSNe Ia) are an independent and direct way to measure H0, where a time-delay measurement between the multiple supernova (SN) images is required. In this work, we present two machine learning approaches for measuring time delays in LSNe Ia, namely, a fully connected neural network (FCNN) and a random forest (RF). For the training of the FCNN and the RF, we simulate mock LSNe Ia from theoretical SN Ia models that include observational noise and microlensing. We test the generalizability of the machine l...
To use strongly lensed Type Ia supernovae (LSNe Ia) for cosmology, a time-delay measurement between ...
peer reviewedTo use strongly lensed Type Ia supernovae (LSNe Ia) for cosmology, a time-delay measure...
It was recently discovered that the expansion of the Universe is accelerating. Type Ia supernovae (S...
The Hubble constant (H0) is one of the fundamental parameters in cosmology, but there is a heated de...
The upcoming Large Synoptic Survey Telescope (LSST) will detect many strongly lensed Type Ia superno...
Gravitationally lensed Type Ia supernovae (SNe Ia) may be the next frontier in cosmic probes, able t...
peer reviewedWe investigate strongly gravitationally lensed type II supernovae (LSNe II) for time-de...
Time-delay strong lensing provides a unique way to directly measure the Hubble constant (H-0). The p...
Time-delay strong lensing provides a unique way to directly measure the Hubble constant (H-0). The p...
Gravitationally lensed sources may have unresolved or blended multiple images, and for time varying ...
International audienceTime-delay strong lensing provides a unique way to directly measure the Hubble...
Supernovae have proven to be exquisite tools for a variety of astrophysics and cosmology topics. In ...
Time-delay cosmography can be used to infer the Hubble parameter $H_0$ by measuring the relative tim...
Measuring time delays from strongly lensed supernovae (SNe) is emerging as a novel andindependent to...
Abstract Local measurements of the Hubble constant ( $$H_0$$ H 0 ) based on Cepheids e Type Ia super...
To use strongly lensed Type Ia supernovae (LSNe Ia) for cosmology, a time-delay measurement between ...
peer reviewedTo use strongly lensed Type Ia supernovae (LSNe Ia) for cosmology, a time-delay measure...
It was recently discovered that the expansion of the Universe is accelerating. Type Ia supernovae (S...
The Hubble constant (H0) is one of the fundamental parameters in cosmology, but there is a heated de...
The upcoming Large Synoptic Survey Telescope (LSST) will detect many strongly lensed Type Ia superno...
Gravitationally lensed Type Ia supernovae (SNe Ia) may be the next frontier in cosmic probes, able t...
peer reviewedWe investigate strongly gravitationally lensed type II supernovae (LSNe II) for time-de...
Time-delay strong lensing provides a unique way to directly measure the Hubble constant (H-0). The p...
Time-delay strong lensing provides a unique way to directly measure the Hubble constant (H-0). The p...
Gravitationally lensed sources may have unresolved or blended multiple images, and for time varying ...
International audienceTime-delay strong lensing provides a unique way to directly measure the Hubble...
Supernovae have proven to be exquisite tools for a variety of astrophysics and cosmology topics. In ...
Time-delay cosmography can be used to infer the Hubble parameter $H_0$ by measuring the relative tim...
Measuring time delays from strongly lensed supernovae (SNe) is emerging as a novel andindependent to...
Abstract Local measurements of the Hubble constant ( $$H_0$$ H 0 ) based on Cepheids e Type Ia super...
To use strongly lensed Type Ia supernovae (LSNe Ia) for cosmology, a time-delay measurement between ...
peer reviewedTo use strongly lensed Type Ia supernovae (LSNe Ia) for cosmology, a time-delay measure...
It was recently discovered that the expansion of the Universe is accelerating. Type Ia supernovae (S...