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THE FUTURE OF SPACE ASTRONOMY: ELECTROMEGNETIC VS GRAVITATIONAL WAVES and HE Neutrino?

机译:空间天文学的未来:电磁与引力波和他中微子?

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The history of space astronomy, especially in the past three decades, has demonstrated clearly the importance and benefits of access to the Gamma-ray, X-ray, UV-optical, near IR and far-IR spectrum from space. The combined use of large ground based facilities and large space observatories is playing a key role in the advance of astrophysics by providing access to the entire electromagnetic spectrum, allowing high sensitivity observations from the lower radio wavelength to the higher energy gamma rays.
机译:空间天文史,特别是在过去的三十年中,已经明确地证明了从空间接近伽马射线,X射线,紫外光,近IR和远红外光谱的重要性和益处。通过提供对整个电磁频谱的访问,允许从较低的无线电波长到较高能量伽马射线的高敏感性观察,在大型地面设施和大型空间观察区的结合使用在天体物理学的前进中发挥着关键作用,允许从较低的无线电波长到更高的能量伽马射线的高灵敏度观察。

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