论文标题
对HESS $ \,$ j1804 $ - $ 216的星际气体的弧线尺度研究
Arc-minute-scale studies of the interstellar gas towards HESS$\,$J1804$-$216: Still an unidentified TeV $γ$-ray source
论文作者
论文摘要
银河TEV $γ$ -Ray源hess $ \,$ j1804 $ - $ 216目前是一个不明的来源。为了揭示其起源,我们在这里使用来自Mopra Southern Galactic Plane Co调查,7和12 $ \,$ MM波长Mopra Surveys和HI的Southern Galactic平面调查的数据提出了最详细的星际气体研究。发现原子和分子气的几个组成部分被发现与视线的各种速度重叠,$ j1804 $ - $ 216。 CS(1-0)发射团体证实存在致密气体。气体和TEV $γ$ ray排放之间的相关性和反相关都已经在各种气体示踪剂中确定,这使得hess $ \,$ j1804 $ - $ 216的TEV $γ$ ray发射的几种起源场景。对于hadronic场景,snr $ \,$ g8.7 $ - $ 0.1和psr $ \的祖细胞snr,$ j1803 $ - $ 2137需要宇宙射线(CR)增强因子$ \ nathord {\ sim} 50 $ the Solar邻居CR cr Flux flux flux flux flux $γ$ -20 $ tev $γ$ -20 $ teve $ -20 $倍。假设各向同性扩散模型,这两个SNR的CRS都需要缓慢的扩散系数,这对于与相邻ISM气体相关的其他TEV SNR所发现。天然气的形态位于3.8 $ \,$ kpc(分散量的距离PSR $ \,$ j1803 $ - $ 2137)倾向于抗交,伴随着hess $ \,$ j1804 $ $ j1804 $ 216的TEV发射功能,从而使Leptonic方案成为可能。因此,纯宽松和纯净的松性场景都是合理的。
The Galactic TeV $γ$-ray source HESS$\,$J1804$-$216 is currently an unidentified source. In an attempt to unveil its origin, we present here the most detailed study of interstellar gas using data from the Mopra Southern Galactic Plane CO Survey, 7 and 12$\,$mm wavelength Mopra surveys and Southern Galactic Plane Survey of HI. Several components of atomic and molecular gas are found to overlap HESS$\,$J1804$-$216 at various velocities along the line of sight. The CS(1-0) emission clumps confirm the presence of dense gas. Both correlation and anti-correlation between the gas and TeV $γ$-ray emission have been identified in various gas tracers, enabling several origin scenarios for the TeV $γ$-ray emission from HESS$\,$J1804$-$216. For a hadronic scenario, SNR$\,$G8.7$-$0.1 and the progenitor SNR of PSR$\,$J1803$-$2137 require cosmic ray (CR) enhancement factors of $\mathord{\sim} 50$ times the solar neighbour CR flux value to produce the TeV $γ$-ray emission. Assuming an isotropic diffusion model, CRs from both these SNRs require a slow diffusion coefficient, as found for other TeV SNRs associated with adjacent ISM gas. The morphology of gas located at 3.8$\,$kpc (the dispersion measure distance to PSR$\,$J1803$-$2137) tends to anti-correlate with features of the TeV emission from HESS$\,$J1804$-$216, making the leptonic scenario possible. Both pure hadronic and pure leptonic scenarios thus remain plausible.