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SEARCH FOR EARLY GAMMA-RAY PRODUCTION IN SUPERNOVAE LOCATED IN A DENSE CIRCUMSTELLAR MEDIUM WITH THE FERMI LAT

机译:使用费米拉尺搜索位于密集的圆形中等介质中的超新星的早期伽马射线产生

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摘要

Supernovae (SNe) exploding in a dense circumstellar medium (CSM) are hypothesized to accelerate cosmic rays in collisionless shocks and emit GeV γ-rays and TeV neutrinos on a timescale of several months. We perform the first systematic search for γ-ray emission in Fermi Large Area Telescope data in the energy range from 100 {MeV} to 300 {GeV} from the ensemble of 147 SNe Type IIn exploding in a dense CSM. We search for a γ-ray excess at each SNe location in a one-year time window. In order to enhance a possible weak signal, we simultaneously study the closest and optically brightest sources of our sample in a joint-likelihood analysis in three different time windows (1 year, 6 months, and 3 months). For the most promising source of the sample, SN 2010jl (PTF 10aaxf), we repeat the analysis with an extended time window lasting 4.5 years. We do not find a significant excess in γ-rays for any individual source nor for the combined sources and provide model-independent flux upper limits for both cases. In addition, we derive limits on the γ-ray luminosity and the ratio of γ-ray-to-optical luminosity ratio as a function of the index of the proton injection spectrum assuming a generic γ-ray production model. Furthermore, we present detailed flux predictions based on multi-wavelength observations and the corresponding flux upper limit at a 95% confidence level (CL) for the source SN 2010jl (PTF 10aaxf).
机译:假设在稠密的星际介质(CSM)中爆炸的超新星(SNe)可以在无碰撞冲击中加速宇宙射线,并在几个月的时间尺度上发射GeVγ射线和TeV中微子。我们从147 SNe IIn系综在密集的CSM中爆炸,在100 {MeV}至300 {GeV}的能量范围内,对费米大面积望远镜数据中的γ射线发射进行了首次系统搜索。我们在一年的时间范围内在每个SNe位置搜索γ射线过量。为了增强可能的微弱信号,我们在三个不同的时间窗口(1年,6个月和3个月)中通过联合似然分析同时研究了样本中最接近和光学最亮的光源。对于最有希望的样本来源,即SN 2010jl(PTF 10aaxf),我们将重复分析时间延长到4.5年。我们没有发现任何单个源或组合源的γ射线有明显过量,并且没有为两种情况提供与模型无关的通量上限。此外,我们假设了通用的γ射线产生模型,得出了γ射线发光度和γ射线与光学发光度之比与质子注入光谱指数的函数之间的限制。此外,我们基于源SN 2010jl(PTF 10aaxf)的多波长观测结果和95%置信度(CL)处的相应通量上限提出了详细的通量预测。

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