WEAVE 首次观测:斯特凌五联的冲击前沿起源与动力学
星系天体物理
2024-11-22 v1
摘要
我们报告了对斯特凌五联(Stephan's Quintet)大尺度冲击前沿的详细研究,这是过去及持续相互作用的副产品。利用来自新款威廉赫希尔望远镜增强面积速度探测器(WEAVE)的面积光谱学、来自 LOFAR 双米线星际 surveys(LoTSS)的最新 144 MHz 观测,以及来自广角阵列和詹姆斯·威布斯太空站(JWST)的归档数据,我们获得了关键冲击属性的新测量,并确定其对该系统的影响。凭借 WEAVE 大型面积光谱单元(LIFU)的场视野(90 78 弧秒)、光谱分辨率()以及跨光学波段的连续波长覆盖, 我们进行了稳健的发射线建模,并以更高的精度定位了多相态星际介质(IGM)中的冲击前沿。冷气体相的冲击为超音速,且与冲击模型比较表明其能够轻松解释观察到的发射线比率。相比之下,我们证明该冲击在可见 X 射线的热等离子体中相对较弱(马赫数 ),对产生解释观察到 synchrotron 发射所需的相对性粒子效率不高。相反,我们提出它导致介质的绝热压缩,从而使射电亮度提高了十倍。将巴尔赫线衰减图与 JWST 观察到的分子气体和热尘埃比较,表明撞击前已存活的尘埃可能存活,使得 H 的凝结成为可能——这是一个关键渠道,可耗尽冲击能量。
引用
@article{arxiv.2411.13635,
title = {WEAVE First Light Observations: Origin and Dynamics of the Shock Front in Stephan's Quintet},
author = {M. I. Arnaudova and S. Das and D. J. B. Smith and M. J. Hardcastle and N. Hatch and S. C. Trager and R. J. Smith and A. B. Drake and J. C. McGarry and S. Shenoy and J. P. Stott and J. H. Knapen and K. M. Hess and K. J. Duncan and A. Gloudemans and P. N. Best and R. García-Benito and R. Kondapally and M. Balcells and G. S. Couto and D. C. Abrams and D. Aguado and J. A. L. Aguerri and R. Barrena and C. R. Benn and T. Bensby and S. R. Berlanas and D. Bettoni and D. Cano-Infantes and R. Carrera and P. J. Concepción and G. B. Dalton and G. D'Ago and K. Dee and L. Domínguez-Palmero and J. E. Drew and E. L. Escott and C. Fariña and M. Fossati and M. Fumagalli and E. Gafton and F. J. Gribbin and S. Hughes and A. Iovino and S. Jin and I. J. Lewis and M. Longhetti and J. Méndez-Abreu and A. Mercurio and A. Molaeinezhad and E. Molinari and M. Monguió and D. N. A. Murphy and S. Picó and M. M. Pieri and A. W. Ridings and M. Romero-Gómez and E. Schallig and T. W. Shimwell and R. Skvarĉ and R. Stuik and A. Vallenari and J. M. van der Hulst and N. A. Walton and C. C. Worley},
journal= {arXiv preprint arXiv:2411.13635},
year = {2024}
}
备注
23 pages, 15 figures, accepted for publication in MNRAS