English

Discovering High-$z$ BL Lacs Using Swift/UVOT and SARA Observations with the Dropout Technique

High Energy Astrophysical Phenomena 2025-11-18 v3

Abstract

Measuring spectroscopic redshifts for BL Lacertae (BL Lac) objects, a class of blazar, is challenging because their optical spectrum lacks, or has weak, emission lines ( equivalent width 5A˚\leqslant5\AA). In this situation, alternative techniques are necessary for the estimation of distances to these sources. In this paper, we estimate the redshift by the photometric dropout technique for a sample of 64 blazars (59 BL Lacs and five blazar candidates of uncertain type). Two telescopes are utilized to observe the sample. The Ultraviolet/Optical Telescope (UVOT) on board {\it Swift} ({\it Swift}/UVOT) observes sources in uvw2, uvm2, uvw1, u, b, vuvw2,\ uvm2,\ uvw1,\ u,\ b,\ v filters, while the ground-based telescopes SARA-CT/RM observed sources in g, r, i, zg',\ r,' \ i',\ z' filters. We fit the photometric data with the LePHARE package and report four new high-zz (z>1.3z>1.3) BL Lacs at 2.030.05+0.072.03^{+0.07}_{-0.05}, 1.840.03+0.101.84^{+0.10}_{-0.03}, 2.040.14+0.162.04^{+0.16}_{-0.14}, and 2.930.04+0.012.93^{+0.01}_{-0.04} as well as upper limits for 50 sources. This work increased the number of high-zz BL Lacs found by this method up to 23. The high-zz sources are discussed in the context of the cosmic gamma-ray horizon, blazar sequence, Fermi blazar divide, and masquerading BL Lacs.

Keywords

Cite

@article{arxiv.2409.16236,
  title  = {Discovering High-$z$ BL Lacs Using Swift/UVOT and SARA Observations with the Dropout Technique},
  author = {Y. Sheng and K. Imam and A. Kaur and M. Ajello and A. Domínguez and A. Rau and S. B. Cenko and J. Greiner and D. H. Hartmann and A. Circiello and I. Cox and S. Joffre and A. Mcdaniel and G. Rajguru and R. Silver and N. Torres-Albá and A. Webber},
  journal= {arXiv preprint arXiv:2409.16236},
  year   = {2025}
}

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