A Method to Measure Photometries of Moderately Saturated UVOT Sources

IF 8.6 1区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Astrophysical Journal Supplement Series Pub Date : 2023-10-01 DOI:10.3847/1538-4365/acf20a
Hao Zhou, Zhi-Ping Jin, Stefano Covino, Yi-Zhong Fan, Da-Ming Wei
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Abstract

Abstract For bright transients such as gamma-ray bursts (GRBs), the Ultra-Violet/Optical Telescope (UVOT) operates under event mode at early phases, which records incident positions and the arrival time for each photon. The event file is able to be screened into many exposures to study the early light curve of GRBs with a high time resolution, including the rapid brightening of the UV/optical emission in particular. Such a goal, however, is hampered for some extremely bright GRBs by the saturation in UVOT event images. For moderately saturated UVOT sources, in this work we further develop the method proposed in Jin et al. to recover their photometries. The basic idea is to assume a stable point-spread function of UVOT images, for which the counts in the core region (i.e., an aperture of a radius of 5″) and the wing region (i.e., an annulus ranging from 15″–25″) should be constant, and the intrinsic flux can be reliably inferred with data in the ring. We demonstrate that in a given band, a tight correlation does hold among the background-removed count rates in the core and the wing. With the new method, the bright limit of measuring range for UVOT V and B bands increases by ∼1.7 mag, while only by ∼0.7 mag for the U band due to the lack of bright calibration sources. Systematic uncertainties are ∼0.2 mag for the V , B , and U bands.
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中等饱和UVOT光源光度测量方法
对于伽马射线暴(GRBs)等明亮瞬变现象,紫外/光学望远镜(UVOT)在早期阶段工作在事件模式下,记录每个光子的入射位置和到达时间。事件文件可以筛选到多个曝光,以高时间分辨率研究grb的早期光曲线,特别是紫外/光学发射的快速增亮。然而,由于UVOT事件图像的饱和,对于一些非常明亮的grb来说,这样的目标受到阻碍。对于中等饱和的UVOT源,在这项工作中,我们进一步发展了Jin等人提出的方法来恢复其光度。其基本思想是假设UVOT图像具有稳定的点扩展函数,其中核心区域(即半径为5″的孔径)和翼区(即半径为15″-25″的环空)的计数应该是恒定的,并且可以通过环内数据可靠地推断出固有通量。我们证明,在一个给定的波段,一个紧密的相关性确实保持在核心和翼的背景去除计数率。使用新方法,UVOT V和B波段的测量范围的亮度限制增加了~ 1.7 mag,而由于缺乏明亮的校准源,U波段的测量范围仅增加了~ 0.7 mag。V、B和U波段的系统不确定度为~ 0.2等。
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来源期刊
Astrophysical Journal Supplement Series
Astrophysical Journal Supplement Series 地学天文-天文与天体物理
CiteScore
14.50
自引率
5.70%
发文量
264
审稿时长
2 months
期刊介绍: The Astrophysical Journal Supplement (ApJS) serves as an open-access journal that publishes significant articles featuring extensive data or calculations in the field of astrophysics. It also facilitates Special Issues, presenting thematically related papers simultaneously in a single volume.
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