论文标题

使用五百米的光圈球形射电望远镜寻找地球外智能的机会

Opportunities to Search for Extra-Terrestrial Intelligence with the Five-hundred-meter Aperture Spherical radio Telescope

论文作者

Li, Di, Gajjar, Vishal, Wang, Pei, Siemion, Andrew, Zhang, Zhisong, Zhang, Haiyan, Yue, Youling, Zhu, Yan, Jin, Chengjin, Li, Shiyu, Berger, Sabrina, Brzycki, Bryan, Cobb, Jeff, Croft, Steve, Czech, Daniel, DeBoer, David, DeMarines, Julia, Drew, Jamie, Enriquez, J. Emilio, Gizani, Nectaria, Korpela, Eric J., Isaacson, Howard, Lebofsky, Matthew, Lacki, Brian, MacMahon, David H. E., Nanez, Morgan, Niu, Chenhui, Pei, Xin, Price, Danny C., Werthimer, Dan, Worden, Pete, Zhang, Yunfan Gerry, Zhang, Tong-Jie, Collaboration, FAST

论文摘要

无处不在的宜居外星球的发现,再加上仪器和观察能力的革命性进步,在寻找外星外智力(SETI)的过程中迎来了文艺复兴时期。大规模的SETI活动现已在众多国际设施中进行。五百米的光圈球形射电望远镜(FAST)是世界上最大的单次射电望远镜,良好的位置旨在进行敏感的搜索,以表明无线电的发射量。 SETI是原始快速项目计划中指定的五个关键科学目标之一。与突破性聆听计划的合作已于2016年启动,由当时的国家天文学天文台,中国科学院(NAOC)的董事Jun Yan博士和Breakthrough奖基金会主席Peter Worden博士签署。在本文中,我们强调了快速的一些独特特征,这些特征将允许新颖的观察结果。我们识别并描述了指示技术来源的三种不同信号类型,即,狭窄,宽频段,人为分散和调制信号。我们在这里提出了快速的观察,以实现从未探索过的敏感性。

The discovery of ubiquitous habitable extrasolar planets, combined with revolutionary advances in instrumentation and observational capabilities, has ushered in a renaissance in the search for extra-terrestrial intelligence (SETI). Large scale SETI activities are now underway at numerous international facilities. The Five-hundred-meter Aperture Spherical radio Telescope (FAST) is the largest single-aperture radio telescope in the world, well positioned to conduct sensitive searches for radio emission indicative of exo-intelligence. SETI is one of the five key science goals specified in the original FAST project plan. A collaboration with the Breakthrough Listen Initiative has been initiated in 2016 with a joint statement signed both by Dr. Jun Yan, the then director of the National Astronomical Observatories, Chinese Academy of Sciences (NAOC), and Dr. Peter Worden, the Chairman of the Breakthrough Prize Foundation. In this paper, we highlight some of the unique features of FAST that will allow for novel SETI observations. We identify and describe three different signal types indicative of a technological source, namely, narrow-band, wide-band artificially dispersed, and modulated signals. We here propose observations with FAST to achieve sensitivities never before explored.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源