We perform a semi-automated search for strong gravitational lensing systems in the 9000 deg(2) Dark Energy Camera Legacy Survey (DECaLS), part of the Dark Energy Spectroscopic Instrument Legacy Imaging Surveys. The combination of the depth and breadth of these surveys are unparalleled at this time, making them particularly suitable for discovering new strong gravitational lensing systems. We adopt the deep residual neural network architecture developed by Lanusse et al. for the purpose of finding strong lenses in photometric surveys. We compile a training sample that consists of known lensing systems in the Legacy Surveys and the Dark Energy Survey as well as non-lenses in the footprint of DECaLS. In this paper we show the results of applyi...
International audienceContext. Future large-scale surveys with high-resolution imaging will provide ...
We present a new sample of galaxy-scale strong gravitational lens candidates, selected from 904 deg(...
Convolutional Neural Networks (ConvNets) are one of the most promising methods for identifying stron...
We perform a semi-automated search for strong gravitational lensing systems in the 9000 deg2 Dark En...
We have conducted a search for new strong gravitational lensing systems in the Dark Energy Spectrosc...
We search Dark Energy Survey (DES) Year 3 imaging data for galaxy-galaxy strong gravitational lenses...
We search Dark Energy Survey (DES) Year 3 imaging for galaxy–galaxy strong gravitational lenses usin...
Analyzing gravitationally lensed objects enables a wide range of physical and cosmological applicati...
We search Dark Energy Survey (DES) Year 3 imaging for galaxy–galaxy strong gravitational lenses usin...
Buried among millions of galaxies, large sky surveys embed strong gravitational lenses essential to ...
The volume of data that will be produced by new-generation surveys requires automatic classification...
Strong lensing is a powerful probe of the matter distribution in galaxies and clusters and a relevan...
International audienceContext. Future large-scale surveys with high-resolution imaging will provide ...
We present a new sample of galaxy-scale strong gravitational lens candidates, selected from 904 deg(...
Convolutional Neural Networks (ConvNets) are one of the most promising methods for identifying stron...
We perform a semi-automated search for strong gravitational lensing systems in the 9000 deg2 Dark En...
We have conducted a search for new strong gravitational lensing systems in the Dark Energy Spectrosc...
We search Dark Energy Survey (DES) Year 3 imaging data for galaxy-galaxy strong gravitational lenses...
We search Dark Energy Survey (DES) Year 3 imaging for galaxy–galaxy strong gravitational lenses usin...
Analyzing gravitationally lensed objects enables a wide range of physical and cosmological applicati...
We search Dark Energy Survey (DES) Year 3 imaging for galaxy–galaxy strong gravitational lenses usin...
Buried among millions of galaxies, large sky surveys embed strong gravitational lenses essential to ...
The volume of data that will be produced by new-generation surveys requires automatic classification...
Strong lensing is a powerful probe of the matter distribution in galaxies and clusters and a relevan...
International audienceContext. Future large-scale surveys with high-resolution imaging will provide ...
We present a new sample of galaxy-scale strong gravitational lens candidates, selected from 904 deg(...
Convolutional Neural Networks (ConvNets) are one of the most promising methods for identifying stron...