亚洲аv天堂无码,久久aⅴ无码一区二区三区,96免费精品视频在线观看,国产2021精品视频免费播放,国产喷水在线观看,奇米影视久久777中文字幕 ,日韩在线免费,91spa国产无码

      Earth's largest radio telescope to search for "new worlds" outside solar system

      Source: Xinhua| 2019-07-11 18:50:19|Editor: Yamei
      Video PlayerClose

      Aerial photo taken on Sept. 10, 2018 shows China's Five-hundred-meter Aperture Spherical Radio Telescope (FAST) in southwest China's Guizhou Province. (Xinhua/Ou Dongqu)

      by Xinhua writer Yu Fei

      BEIJING, July 11 (Xinhua) -- As well as hunting for signals from alien life, the largest and most sensitive radio telescope ever built will search for extra-solar planets, or exoplanets, which have magnetic fields like Earth, within 100 light-years from Earth.

      Astronomers from countries including China and France recently published their ambitious observation plan using the Five-hundred-meter Aperture Spherical Radio Telescope (FAST) in the academic journal Research in Astronomy and Astrophysics.

      Li Di, a researcher at the National Astronomical Observatories of the Chinese Academy of Sciences and chief scientist of FAST, said scientists are more concerned about habitable planets, which should have not only water, a suitable temperature and atmosphere, but also magnetic field.

      "The earth's magnetic field protects life from cosmic rays. There is a scientific bug in the sci-fi blockbuster 'The Wandering Earth,' that is, the earth stops rotating. If that happens, the magnetic field would disappear. Without the protection of the magnetic field, the earth's atmosphere would be blown off by the solar wind. As a result, humans and most living things would be exposed to the harsh cosmic environment and unable to survive," said Li.

      Philippe Zarka, an astronomer from the Paris Observatory, said planets are the most favorable cradle of life. As of today, about 4,000 exoplanets have been found.

      There are six magnetized planets in the solar system with a planetary-scale magnetic field: Mercury, Earth, Jupiter, Saturn, Uranus and Neptune.

      "In our solar system, magnetized planets are strong radio sources. Radio detection of exoplanets aims at the physical characterization of exoplanets and comparative studies with solar system planets," said Zarka.

      The first exoplanet was discovered near a pulsar by means of radio astronomy. But that is a very special case. Except for that, all the exoplanets found so far were discovered through optical astronomy or infrared imaging, according to Li.

      Those discoveries have led scientists to believe that almost all the stars in the Milky Way have planets resolving around them. And there must be plenty of habitable planets.

      "In our solar system, the high-energy charged particles in the solar wind and the electrons from some planets' moons would have interaction with the magnetosphere of planets, generating radio radiation," said Li.

      "All the planets with magnetic fields in our solar system can be found generating such radiation, which can be measured and studied by radio telescopes. But research on the planets' magnetic fields cannot be realized through optical and infrared astronomical observation.

      "Do the exoplanets have magnetic fields? If they have, they should also generate radio radiation under the influence of the wind of their parent stars," Li added.

      Astronomers have been looking for radio signals from exoplanets, but with no discovery yet.

      "We want to try with FAST, which is the world's most sensitive radio telescope. If we can for the first time detect the radio radiation of an exoplanet and confirm its magnetic field, it would be a very important discovery," said Li.

      "If this observation window is opened, we would be able to study the laws of the magnetic fields of exoplanets and whether they are habitable in another aspect," he said.

      Photo taken on June 27, 2016 shows FAST under the stars. (Xinhua/Liu Xu)

      Most exoplanets have been discovered by the U.S. Kepler space telescope. Those exoplanets are located away from Earth at a distance of more than 500 light-years.

      In 2018, NASA launched a new planet-hunting satellite, the Transiting Exoplanet Survey Satellite (TESS), to target exoplanets closer to Earth.

      "If TESS could find a large number of exoplanets, and we also track them, the possibility of discovering exoplanets with magnetic fields will increase," Li said.

      "We are looking for exoplanets within 100 light-years from Earth. Once such planets are found, it would be favorable for scientists to conduct a thorough study of them, and there is even possibility for interstellar migration."

      Located in a naturally deep and round karst depression in southwest China's Guizhou Province, FAST was completed in September 2016 and is due to start regular operations in September this year.

      The performance of the telescope during commissioning is beyond imagination, said Li.

      During testing and early operation, FAST started making astronomical discoveries, particularly of pulsars of various kinds, including millisecond pulsars, binaries and gamma-ray pulsars,

      A team of astronomers from more than 10 countries and regions are making observation plans for FAST, in order to best apply the unprecedented power of the telescope, going beyond what has been done by other telescopes in the past.

      They have proposed ambitious observation objectives through the telescope, such as gravitational waves, exoplanets, ultra-high energy cosmic rays and interstellar matter, to advance human knowledge of astronomy, astrophysics and fundamental physics.

      "Planning new observations to find new targets and new kinds of objects beyond the reach of existing facilities is one of the most exciting jobs of a professional astronomer," Li said.

      Scientists believe more discoveries that exceed expectations will be made with FAST.

      "When such a powerful new telescope begins its scientific observations, unexpected signals and effects often emerge," Li said.

      "As these observation projects will be launched over the next few years, FAST will have an impact on many areas of astronomy and astrophysics around the world. Although we cannot predict what it will discover, the telescope may profoundly change our understanding of the universe," Li added.

      KEY WORDS:
      EXPLORE XINHUANET
      010020070750000000000000011103261382183371
      主站蜘蛛池模板: 亚洲av午夜成人片精品| 国产精品国产三级专区不卡| 免费va国产高清不卡大片 | 日本人妻少妇精品视频专区| 国产精品玖玖资源站大全| 亚洲免费不卡av网站| 国产精品一区2区三区| 国内精品久久久久精免费| 国产成人亚洲综合无码dvd| 亚洲AV无码久久久久调教| 国产女主播免费在线观看 | 国产精品污一区二区三区| а的天堂网最新版在线| 精品国产迷系列在线观看| 亚洲色图欧美在线| 欧美日韩国产高清| 国产精品大屁股1区二区三区| 国产精品第一二三区久久| 国产精品久久久久9999| 91久久精品国产性色tv| 岛国熟女一区二区三区| 蜜桃一区二区三区在线看| 欧洲美熟女乱又伦av| 91九色蝌蚪国产精品| 乌拉特后旗| 日本老年人精品久久中文字幕| 亚洲国产成人AV在线电影播放| 曰本超级乱婬Av片免费| 沙雅县| 97久久综合区小说区图片专区 | 久久亚洲国产成人精品性色| 99在线无码精品秘 人口| 偷拍av一区二区三区| 亚洲国产欧美日韩在线人成| 欧美人与动欧交视频| 日本特黄a级高清免费大片| √最新版天堂资源在线| 日本边摸边吃奶边做很爽视频| 粉嫩小少妇bwbwbw| 亚洲无码美韩综合| 91青青草久久|