Broadband Spectral Analysis of 1ES2344+514: A Multi-epoch study
Kishor Chaudhury, Abhradeep Roy, Varsha R. Chitnis, Prajval Shastri, and Rajat K. Dey

TL;DR
This multi-epoch study of 1ES 2344+514 reveals spectral evolution, including a shift to HSP BL Lac classification, and analyzes emission mechanisms using broadband data from optical to TeV energies.
Contribution
The paper provides a comprehensive multi-epoch broadband spectral analysis of 1ES 2344+514, highlighting spectral shifts and emission process modeling with a steady-state leptonic model.
Findings
Observed a shift in the synchrotron peak to HSP BL Lac.
Detected a 'harder-when-brighter' trend in X-rays.
Found a weak correlation between bolometric luminosity and magnetic field.
Abstract
We present the results of the multi-epoch broadband spectral study of 1ES 2344+514 and study the evolution of physical parameters. We used nearly simultaneous data obtained from 2017 June 6 to 2022 August 6 (MJD 57910 -- 59797) in optical, UV, X-ray and -ray wavebands from various instruments including Swift-UVOT, Swift-XRT, NuSTAR, AstroSat (SXT and LAXPC), Fermi-LAT, and TeV flux from MAGIC. During 2017 July, 1ES 2344+514 appeared to be in the highest flaring state compared to other periods. We used the 0.5 -- 7.0 keV and 3.0 -- 20.0 keV data, respectively, from SXT and LAXPC of AstroSat and also 0.3 -- 8.0 keV and 3.0 -- 79.0 keV data, respectively, from Swift-XRT and NuSTAR. A joint fit between SXT and LAXPC, and between Swift-XRT and NuSTAR has been done for constraining the synchrotron peak. A clear shift in the synchrotron peak has been observed, which included 1ES…
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Taxonomy
TopicsAstrophysics and Cosmic Phenomena · Astrophysical Phenomena and Observations · Gamma-ray bursts and supernovae
