论文标题

平面无线电类星体PKS 0346-27的多频变异性研究

Multi-frequency Variability Study of Flat-Spectrum Radio Quasar PKS 0346-27

论文作者

Kamaram, Sushanth Reddy, Prince, Raj, Pramanick, Suman, Bose, Debanjan

论文摘要

我们使用Fermi-Lat(Gamma-rays),Swift-Xrt(X-Rays)和Swift-uvot(ultra-uvot and optical and optical and optical and optical and optical)的数据,提出了2019年1月至2021年12月(MJD 58484-59575)的Blazar PKS 0346-27的多波长时间和光谱研究。我们通过分析了两年内从费米 - 拉特数据产生的伽马射线光曲线来识别多个耀斑发作。然后,使用指数拟合和一日式的固定装置对这些单独的伽马射线耀斑的光曲线进行建模。我们发现,伽马射线光曲线的最小可变性时间为1.34 +\ - 0.3天,而迅速波长的范围为0.1-3.2天,表明源的紧凑性。通过使用单区LEPTONIC发射机制对同时的多波带光谱分布(SED)进行建模,研究了宽带发射机制。我们发现,可以通过同步加速器和同步加速器自compton(SSC)排放来解释光学UV和X射线数据。然而,外部康普顿辐射的磁盘成分在较高的能量下占主导地位,而EC宽线区域和SSC的贡献。此外,我们使用功率谱响应(PSRESP)方法进行了使用伽马射线光曲线的数据进行功率光谱密度(PSD)分析。使用Power Law模型,发现最佳拟合斜率为2.15 +\ -0.87。该来源可能是即将在较低能量(数十个GEV)处更硬的CTA的有希望的目标。

We have presented a multiwavelength temporal and spectral study of the Blazar PKS 0346-27 for the period 2019 January-2021 December (MJD 58484-59575) using data from Fermi-LAT (gamma-rays), Swift-XRT (X-rays) and Swift-UVOT (ultra-violet and optical). We identified multiple flaring episodes by analyzing the gamma-ray light curve generated from the Fermi-LAT data over a two-year period. The light curves of these individual gamma-ray flares with one-day binning were then modeled using a sum-of-exponentials fit. We found the minimum variability times for the gamma-ray light curve to be 1.34 +\- 0.3 days and a range of 0.1-3.2 days for the Swift wavelengths suggesting the compactness of the source. The broadband emission mechanism was studied by modeling the simultaneous multi-waveband Spectral Energy Distributions (SED) using the one-zone leptonic emission mechanism. We found that the optical-UV and X-ray data can be explained by the synchrotron and Synchrotron Self-Compton (SSC) emissions. However, the disk component of the External Compton radiation is dominant at higher energies with contributions from the EC broad line region component and SSC. Further, we performed a power spectral density (PSD) analysis with data from the gamma-ray light curve using the power spectrum response (PSRESP) method. With the power law model, a best-fit slope of 2.15 +\- 0.87 was found. This source could be a promising target for upcoming CTA for its harder spectrum at lower energies (tens of GeV).

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