Hisabayashi Hisashi
Institute of Space and Astronautical Science/JAXA.
Biol Sci Space. 2003 Dec;17(4):324-40. doi: 10.2187/bss.17.324.
It is much easier to find extraterrestrial intelligence than to detect simple organisms living on other planets. However, it is hard to communicate with such intelligence without the mutual understanding of inter-stellar communication protocol. The radio SETI (The Search for Extra-Terrestrial Intelligence) was initiated with the pioneering work of F. Drake in 1960, one year after the historical SETI paper by Cocconi and Morrison. This talk explains that SETI evolves with two bases of science; the understanding of our universe and the development of technology. Since SETI has had strong connection with radio astronomy from its early beginning, the impacts of radio astronomical findings and technological breakthrough can be seen in many aspects of the SETI history. Topics of this talk include the detection of microwave 3 K background radiation in the universe. Interstellar atomic and molecular lines found in radio-wave spectra provide the evidence of pre-biotic chemical evolution in such region. Radio telescope imaging and spectral technique are closely associated with methodology of SETI. Topics of the talk extend to new Allen Telescope Array and projected Square Kilometer Array. Recent optical SETI and the discoveries of extra solar planets are also explained. In the end, the recent understanding of our universe is briefly introduced in terms of matter, dark matter and dark energy. Even our understanding of the universe has been evolutionarily revolved and accumulated after 1960, we must recognize that our universe is still poorly understood and that astronomy and SETI are required to proceed hand in hand.
寻找外星智慧生物比探测其他行星上的简单生物要容易得多。然而,如果没有对星际通信协议的相互理解,就很难与这种智慧生物进行交流。射电搜寻地外文明计划(SETI)始于1960年F. 德雷克的开创性工作,这是在科科尼和莫里森发表具有历史意义的SETI论文一年之后。本次演讲解释了SETI是基于两个科学基础发展而来的:对我们宇宙的理解和技术的发展。由于SETI从一开始就与射电天文学有着紧密的联系,射电天文学的发现和技术突破的影响在SETI的历史中可以在许多方面看到。本次演讲的主题包括宇宙中微波3K背景辐射的探测。在射电频谱中发现的星际原子和分子谱线为该区域生命起源前的化学演化提供了证据。射电望远镜成像和光谱技术与SETI的方法密切相关。演讲主题还扩展到新的艾伦望远镜阵列和规划中的平方公里阵列。还解释了最近的光学SETI以及系外行星的发现。最后,从物质、暗物质和暗能量方面简要介绍了我们对宇宙的最新认识。即使我们对宇宙的理解自1960年以来已经经历了进化性的变革和积累,但我们必须认识到,我们对宇宙的了解仍然很少,天文学和SETI需要携手并进。