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February 8, 2026SHILAP Revista de lepidopterología0 citationsOpen Access

PEARLS: 21 Transients Found in the Three-epoch NIRCam Observations in the Continuous Viewing Zone of the James Webb Space Telescope

HYHaojing YanSWS. P. WillnerZMZhiyuan Ma

Key Points

  • This work aims to identify and characterize transients observed in NIRCam data from the JWST.
  • Conducted three-epoch, four-band observations with NIRCam in the Spitzer IRAC Dark Field.
  • Used Hubble's Advanced Camera for Surveys for optical imaging during two epochs of NIRCam observations.
  • Performed spectroscopy on select transients to confirm classifications and redshifts.
  • Identified 21 transients, including a confirmed Type Ia supernova at redshift z = 1.63.
  • Classified transients into mid-z and low-z groups based on photometric redshifts.
  • Mid-z transients are consistent with supernovae, while low-z transients display characteristics of gap transients.

Abstract

Abstract We present 21 transients from our three-epoch, four-band NIRCam observations covering 14.16 arcmin 2 in the Spitzer IRAC Dark Field (IDF), taken by the JWST Prime Extragalactic Areas for Reionization and Lensing Science program with a time cadence of ∼6 months. A separate Hubble Space Telescope program provided Advanced Camera for Surveys optical imaging contemporaneous with the second and third epochs of the NIRCam observations. The NIRSpec spectroscopy on three transients confirmed a Type Ia supernova at z = 1.63 and the host galaxies of the other two at z = 2.64 and 1.90, respectively. Combining these with the photometric redshifts ( z ph ) of the host galaxies in the rest of the sample, we find that the transients are in either a “mid- z ” group at z > 1.6 with M V ≲ − 16.0 mag or a “low- z ” group at z < 0.4 with M H ≳ − 14.0 mag. The mid- z transients are consistent with supernovae. In contrast, the low- z transients’ luminosities fall in the range of the so-called “gap transients” between supernovae and novae. However, this latter conclusion is only tentative due to possible catastrophic failures in z ph that could bias them to low- z . Conversely, if they are indeed at z < 0.4, it would be worth studying similar transients in the future. Our work further demonstrates the power of NIRCam in transient science and also shows that it would be more fruitful to carry out a long-term monitoring program with more passbands, a higher cadence, and prompt follow-up spectroscopy. Being in the continuous viewing zone of the JWST, the IDF is an ideal field for this purpose.

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Cite This Study

Yan et al. (2026) studied this question.

synapsesocial.com/papers/698829410fc35cd7a88496c7https://doi.org/10.3847/1538-4357/ae2c5d
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