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A new SNR with TeV shell-type morphology: HESS J1731-347

机译:具有TeV壳型形态的新SNR:HESS J1731-347

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摘要

Aims. The recent discovery of the radio shell-type supernova remnant (SNR), G353.6-0.7, in spatial coincidence with the unidentified TeV source HESS J1731?347 has motivated further observations of the source with the High Energy Stereoscopic System (HESS) Cherenkov telescope array to test a possible association of the γ-ray emission with the SNR. Methods. With a total of 59?h of observation, representing about four times the initial exposure available in the discovery paper of HESS?J1731?347, the γ-ray morphology is investigated and compared with the radio morphology. An estimate of the distance is derived by comparing the interstellar absorption derived from X-rays and the one obtained from 12CO and HI observations. Results. The deeper γ-ray observation of the source has revealed a large shell-type structure with similar position and extension (r?~?0.25°) as the radio SNR, thus confirming their association. By accounting for the HESS angular resolution and projection effects within a simple shell model, the radial profile is compatible with a thin, spatially unresolved, rim. Together with RX?J1713.7?3946, RX?J0852.0?4622 and SN 1006, HESS J1731?347 is now the fourth SNR with a significant shell morphology at TeV energies. The derived lower limit on the distance of the SNR of 3.2?kpc is used together with radio and X-ray data to discuss the possible origin of the γ-ray emission, either via inverse Compton scattering of electrons or the decay of neutral pions resulting from proton-proton interaction.
机译:目的最近发现的无线电壳型超新星残留(SNR)G353.6-0.7与未识别的TeV源HESS J1731?347在空间上吻合,这激发了用高能立体镜系统(HESS)Cherenkov对该源的进一步观察望远镜阵列以测试γ射线发射与SNR的可能关联。方法。总共进行了59?h的观察,大约是HESS?J1731?347的发现论文中提供的初始曝光量的四倍,研究了γ射线的形态并将其与放射线形态进行了比较。通过比较从X射线获得的星际吸收与从12CO和HI观测得到的吸收,可以得出距离的估计值。结果。对源进行更深的γ射线观测后,发现了一个大的壳型结构,其位置和扩展范围与无线电SNR相似,从而证实了它们的关联性。通过在简单的壳模型中考虑HESS角分辨率和投影效果,径向轮廓与薄的,空间上未解析的边缘兼容。现在,HESS J1731?347与RX?J1713.7?3946,RX?J0852.0?4622和SN 1006一起成为第四个SNR,在TeV能量下具有显着的壳形。得出的SNR距离下限为3.2?kpc,与无线电和X射线数据一起使用,讨论了通过电子的逆康普顿散射或中性离子的衰变而引起的γ射线发射的可能原因。来自质子-质子相互作用。

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