NEXUS: A Search for Nuclear Variability with the First Two JWST NIRCam Epochs

Fuente: arXiv
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Autores principales: Stone, Zachary, Shen, Yue, Zhuang, Ming-Yang, Hu, Lei, Pierel, Justin, Li, Junyao, Burgasser, Adam J., Greene, Jenny E., Pan, Zhiwei, Shapley, Alice E., Sun, Fengwu, Venkatraman, Padmavathi, Wang, Feige
Formato: Preprint
Publicado: 2025
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author Stone, Zachary
Shen, Yue
Zhuang, Ming-Yang
Hu, Lei
Pierel, Justin
Li, Junyao
Burgasser, Adam J.
Greene, Jenny E.
Pan, Zhiwei
Shapley, Alice E.
Sun, Fengwu
Venkatraman, Padmavathi
Wang, Feige
author_facet Stone, Zachary
Shen, Yue
Zhuang, Ming-Yang
Hu, Lei
Pierel, Justin
Li, Junyao
Burgasser, Adam J.
Greene, Jenny E.
Pan, Zhiwei
Shapley, Alice E.
Sun, Fengwu
Venkatraman, Padmavathi
Wang, Feige
contents The multi-cycle JWST Treasury program NEXUS will obtain cadenced imaging and spectroscopic observations around the North Ecliptic Pole during 2024-2028. Here we report a systematic search for nuclear variability among $\sim 25\,$k sources covered by NIRCam (F200W+F444W) imaging using the first two NEXUS epochs separated by 9 months in the observed frame. Difference imaging techniques reach $1σ$ variability sensitivity of 0.18~mag (F200W) and 0.15~mag (F444W) at 28th magnitude (within 0".2 diameter aperture), improved to $0.01$~mag and $0.02$~mag at $<25$th magnitude, demonstrating the superb performance of NIRCam photometry. The difference imaging results represent significant improvement over aperture photometry on individual epochs (by $>30\%$). We identify 465 high-confidence variable sources among the parent sample, with 2-epoch flux difference at $>3σ$ from the fiducial variability sensitivity. Essentially all these variable sources are of extragalactic origin based on preliminary photometric classifications, and follow a similar photometric redshift distribution as the parent sample up to $z_{\rm phot}>10$. While the majority of these variability candidates are likely normal unobscured AGNs, some of them may be rare nuclear stellar transients and tidal disruption events that await confirmation with spectroscopy and continued photometric monitoring. We also constrain the photometric variability of ten spectroscopically confirmed broad-line Little Red Dots (LRDs) at $3\lesssim z \lesssim 7$, and find none of them show detectable variability in either band. We derive stringent $3σ$ upper limits on the F444W variability of $\sim 3-10\%$ for these LRDs, with a median value of $\sim 5\%$. These constraints imply weak variability in the rest-frame optical continuum of LRDs.
format Preprint
id arxiv_https___arxiv_org_abs_2509_19585
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle NEXUS: A Search for Nuclear Variability with the First Two JWST NIRCam Epochs
Stone, Zachary
Shen, Yue
Zhuang, Ming-Yang
Hu, Lei
Pierel, Justin
Li, Junyao
Burgasser, Adam J.
Greene, Jenny E.
Pan, Zhiwei
Shapley, Alice E.
Sun, Fengwu
Venkatraman, Padmavathi
Wang, Feige
Astrophysics of Galaxies
The multi-cycle JWST Treasury program NEXUS will obtain cadenced imaging and spectroscopic observations around the North Ecliptic Pole during 2024-2028. Here we report a systematic search for nuclear variability among $\sim 25\,$k sources covered by NIRCam (F200W+F444W) imaging using the first two NEXUS epochs separated by 9 months in the observed frame. Difference imaging techniques reach $1σ$ variability sensitivity of 0.18~mag (F200W) and 0.15~mag (F444W) at 28th magnitude (within 0".2 diameter aperture), improved to $0.01$~mag and $0.02$~mag at $<25$th magnitude, demonstrating the superb performance of NIRCam photometry. The difference imaging results represent significant improvement over aperture photometry on individual epochs (by $>30\%$). We identify 465 high-confidence variable sources among the parent sample, with 2-epoch flux difference at $>3σ$ from the fiducial variability sensitivity. Essentially all these variable sources are of extragalactic origin based on preliminary photometric classifications, and follow a similar photometric redshift distribution as the parent sample up to $z_{\rm phot}>10$. While the majority of these variability candidates are likely normal unobscured AGNs, some of them may be rare nuclear stellar transients and tidal disruption events that await confirmation with spectroscopy and continued photometric monitoring. We also constrain the photometric variability of ten spectroscopically confirmed broad-line Little Red Dots (LRDs) at $3\lesssim z \lesssim 7$, and find none of them show detectable variability in either band. We derive stringent $3σ$ upper limits on the F444W variability of $\sim 3-10\%$ for these LRDs, with a median value of $\sim 5\%$. These constraints imply weak variability in the rest-frame optical continuum of LRDs.
title NEXUS: A Search for Nuclear Variability with the First Two JWST NIRCam Epochs
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2509.19585