International audienceContext. Future large-scale surveys with high-resolution imaging will provide us with approximately 105 new strong galaxy-scale lenses. These strong-lensing systems will be contained in large data amounts, however, which are beyond the capacity of human experts to visually classify in an unbiased way. Aim. We present a new strong gravitational lens finder based on convolutional neural networks (CNNs). The method was applied to the strong-lensing challenge organized by the Bologna Lens Factory. It achieved first and third place, respectively, on the space-based data set and the ground-based data set. The goal was to find a fully automated lens finder for ground-based and space-based surveys that minimizes human inspecti...
Analyzing gravitationally lensed objects enables a wide range of physical and cosmological applicati...
Large-scale imaging surveys will increase the number of galaxy-scale strong lensing candidates by ma...
Convolutional Neural Networks (ConvNets) are one of the most promising methods for identifying stron...
International audienceContext. Future large-scale surveys with high-resolution imaging will provide ...
As we enter the era of large-scale imaging surveys with the upcoming telescopes such as the Large Sy...
We propose a method for the automated detection of strong galaxy-galaxy gravitational lenses in imag...
Forthcoming large imaging surveys such as Euclid and the Vera Rubin Observatory Legacy Survey of Spa...
International audienceLarge-scale imaging surveys will increase the number of galaxy-scale strong le...
We explore the effectiveness of deep learning convolutional neural networks (CNNs) for estimating st...
The volume of data that will be produced by new-generation surveys requires automatic classification...
Analyzing gravitationally lensed objects enables a wide range of physical and cosmological applicati...
Large-scale imaging surveys will increase the number of galaxy-scale strong lensing candidates by ma...
Convolutional Neural Networks (ConvNets) are one of the most promising methods for identifying stron...
International audienceContext. Future large-scale surveys with high-resolution imaging will provide ...
As we enter the era of large-scale imaging surveys with the upcoming telescopes such as the Large Sy...
We propose a method for the automated detection of strong galaxy-galaxy gravitational lenses in imag...
Forthcoming large imaging surveys such as Euclid and the Vera Rubin Observatory Legacy Survey of Spa...
International audienceLarge-scale imaging surveys will increase the number of galaxy-scale strong le...
We explore the effectiveness of deep learning convolutional neural networks (CNNs) for estimating st...
The volume of data that will be produced by new-generation surveys requires automatic classification...
Analyzing gravitationally lensed objects enables a wide range of physical and cosmological applicati...
Large-scale imaging surveys will increase the number of galaxy-scale strong lensing candidates by ma...
Convolutional Neural Networks (ConvNets) are one of the most promising methods for identifying stron...