中文

Gamow探测器:研究高红移宇宙的伽马射线暴观测台及多信使天体物理赋能平台

高能天体物理现象 2021-11-17 v2 天体物理仪器与方法

摘要

Gamow探测器将利用伽马射线暴(GRB)来:1)探测高红移宇宙(z > 6),即首批恒星诞生、星系形成和氢再电离时期;2)通过快速识别引力波(GW)事件的电磁(红外/光学/X射线)对应体来实现多信使天体物理。GRB已被探测到z ~ 9,其余辉是持续数天的明亮信标,可用于观测宿主星系和星系际介质的光谱指纹,以绘制再电离和早期金属增丰时期。Gamow探测器经过优化,可快速识别高z事件,以触发JWST和大型地基望远镜的后续观测。宽视场龙虾眼X射线望远镜(LEXT)将搜寻GRB并以角分精度定位它们。当探测到GRB时,快速转向的航天器将指向5个测光通道的光度红移红外望远镜(PIRT),在100秒内识别高红移(z > 6)长GRB,并在GRB触发后1000秒内发送警报。L2轨道提供> 95%的观测效率,其指向针对詹姆斯·韦伯空间望远镜(JWST)和地基天文台的后续观测进行了优化。预测的Gamow探测器高z速率是Neil Gehrels Swift天文台的两倍以上。该仪器和任务能力还能够快速识别短GRB及其与GW事件相关的余辉。Gamow探测器将提交给2021年NASA MIDEX征集,若获批准,将于2028年发射。

关键词

引用

@article{arxiv.2111.06497,
  title  = {The Gamow Explorer: A gamma-ray burst observatory to study the high redshift universe and enable multi-messenger astrophysics},
  author = {N. E. White and F. E. Bauer and W. Baumgartner and M. Bautz and E. Berger and S. B. Cenko and T. -C. Chang and A. Falcone and H. Fausey and C. Feldman and D. Fox and O. Fox and A. Fruchter and C. Fryer and G. Ghirlanda and K. Gorski and K. Grant and S. Guiriec and M. Hart and D. Hartmann and J. Hennawi and D. A. Kann and D. Kaplan and J. and A. Kennea and D. Kocevski and C. Kouveliotou and C. Lawrence and A. J. Levan and A. Lidz and A. Lien and T. B. Littenberg and L. Mas-Ribas and M. Moss and P. O'Brien and J. O'Meara and D. M. Palmer and D. Pasham and J. Racusin and R. Remillard and O. J. Roberts and P. Roming and M. Rud and R. Salvaterra and R. Sambruna and M. Seiffert and G. Sun and N. R. Tanvir and R. Terrile and N. Thomas and A. van der Horst and W. T. Verstrand and P. Willems and C. Wilson-Hodge and E. T. Young and L. Amati and E. Bozzo and O. Ł. Karczewski and C. Hernandez-Monteagudo and R. Rebolo Lopez and R. Genova-Santos and J. A. Rubino-Martin and J. Granot and P. Bemiamini and R. Gill and E. Burns},
  journal= {arXiv preprint arXiv:2111.06497},
  year   = {2021}
}

备注

14 pages, 8 Figures