The COSMOS-Web Lens Survey (COWLS) II: depth, resolution, and NIR coverage from JWST reveal 17 spectacular lenses
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arXiv
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| Natura: | Preprint |
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2025
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| author | Mahler, Guillaume Nightingale, James W. Hogg, Natalie B. Gozaliasl, Ghassem McCleary, Jacqueline He, Qiuhan Berman, Edward Franco, Maximilien Liu, Daizhong Massey, Richard J. Mercier, Wilfried Scognamiglio, Diana Shuntov, Marko von Wietersheim-Kramsta, Maximilian Paquereau, Louise Ilbert, Olivier Allen, Natalie Toft, Sune Akins, Hollis B. Casey, Caitlin M. Kartaltepe, Jeyhan S. Koekemoer, Anton M. McCracken, Henry Joy Rhodes, Jason D. Robertson, Brant E. Zavala, Jorge A. Drakos, Nicole E. Faisst, Andreas L. Magdis, Georgios E. Jin, Shuowen |
| author_facet | Mahler, Guillaume Nightingale, James W. Hogg, Natalie B. Gozaliasl, Ghassem McCleary, Jacqueline He, Qiuhan Berman, Edward Franco, Maximilien Liu, Daizhong Massey, Richard J. Mercier, Wilfried Scognamiglio, Diana Shuntov, Marko von Wietersheim-Kramsta, Maximilian Paquereau, Louise Ilbert, Olivier Allen, Natalie Toft, Sune Akins, Hollis B. Casey, Caitlin M. Kartaltepe, Jeyhan S. Koekemoer, Anton M. McCracken, Henry Joy Rhodes, Jason D. Robertson, Brant E. Zavala, Jorge A. Drakos, Nicole E. Faisst, Andreas L. Magdis, Georgios E. Jin, Shuowen |
| contents | The COSMOS-Web Lens Survey (COWLS) presents the first systematic search for strong gravitational lenses in the COSMOS-Web field using data from the \textit{James Webb} Space Telescope (\textit{JWST}). Using high-resolution NIRCam imaging, we visually inspected over 42\,660 galaxies and identified over 400 lensing candidates. From this sample and based on \textit{JWST}/NIRCam imaging only, we report here the 17 most obvious and spectacular strong lensing systems. These lenses, characterised by large Einstein rings and arcs and their distinct lens and source colours, were found through only the visual inspection of the lens-light-subtracted image data and were immediately visible due to their spectacular appearance. We showcase how spectacular strong lenses are at the extremes of lens parameter space. Their exceptionally high signal-to-noise, multi-wavelength imaging enables unprecedented lensing analysis, including `\textit{HST}-dark' source galaxies that are also invisible in the deeper bluer \textit{JWST} wavebands, enabling clean deblending between the lens and the source. Sources may exhibit dramatic morphological changes across wavelengths, and dust absorption within lenses may be detectable by eye. No other instrument, including the \textit{Hubble} Space Telescope, can discover or image such lenses with comparable detail. We estimate that \textit{JWST} uncovers a new spectacular lens approximately every 10 to 12 NIRCam pointings, suggesting that over 40 such lenses remain undetected within its first three years of observations. All COWLS data is publicly available on GitHub. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2503_08782 |
| institution | arXiv |
| publishDate | 2025 |
| record_format | arxiv |
| spellingShingle | The COSMOS-Web Lens Survey (COWLS) II: depth, resolution, and NIR coverage from JWST reveal 17 spectacular lenses Mahler, Guillaume Nightingale, James W. Hogg, Natalie B. Gozaliasl, Ghassem McCleary, Jacqueline He, Qiuhan Berman, Edward Franco, Maximilien Liu, Daizhong Massey, Richard J. Mercier, Wilfried Scognamiglio, Diana Shuntov, Marko von Wietersheim-Kramsta, Maximilian Paquereau, Louise Ilbert, Olivier Allen, Natalie Toft, Sune Akins, Hollis B. Casey, Caitlin M. Kartaltepe, Jeyhan S. Koekemoer, Anton M. McCracken, Henry Joy Rhodes, Jason D. Robertson, Brant E. Zavala, Jorge A. Drakos, Nicole E. Faisst, Andreas L. Magdis, Georgios E. Jin, Shuowen Astrophysics of Galaxies Cosmology and Nongalactic Astrophysics The COSMOS-Web Lens Survey (COWLS) presents the first systematic search for strong gravitational lenses in the COSMOS-Web field using data from the \textit{James Webb} Space Telescope (\textit{JWST}). Using high-resolution NIRCam imaging, we visually inspected over 42\,660 galaxies and identified over 400 lensing candidates. From this sample and based on \textit{JWST}/NIRCam imaging only, we report here the 17 most obvious and spectacular strong lensing systems. These lenses, characterised by large Einstein rings and arcs and their distinct lens and source colours, were found through only the visual inspection of the lens-light-subtracted image data and were immediately visible due to their spectacular appearance. We showcase how spectacular strong lenses are at the extremes of lens parameter space. Their exceptionally high signal-to-noise, multi-wavelength imaging enables unprecedented lensing analysis, including `\textit{HST}-dark' source galaxies that are also invisible in the deeper bluer \textit{JWST} wavebands, enabling clean deblending between the lens and the source. Sources may exhibit dramatic morphological changes across wavelengths, and dust absorption within lenses may be detectable by eye. No other instrument, including the \textit{Hubble} Space Telescope, can discover or image such lenses with comparable detail. We estimate that \textit{JWST} uncovers a new spectacular lens approximately every 10 to 12 NIRCam pointings, suggesting that over 40 such lenses remain undetected within its first three years of observations. All COWLS data is publicly available on GitHub. |
| title | The COSMOS-Web Lens Survey (COWLS) II: depth, resolution, and NIR coverage from JWST reveal 17 spectacular lenses |
| topic | Astrophysics of Galaxies Cosmology and Nongalactic Astrophysics |
| url | https://arxiv.org/abs/2503.08782 |