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  • About XAO
    • Brief Introduction
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  • HomeResearch News
  • Research News
    • Nov 06, 2015
      The 2015 symposium, continuing the cooperation and dream
          From Nov 5th to 6th, 2015, Chen Maozhen, the deputy director of Xinjiang Astronomical Observatory (XAO) and more than 20 fellows have been invited to the bilateral academic symposium, which held by the University of Science and Techn...
    • Sep 07, 2015
      Improvements of Xinjiang Astronomical Observatory in the Recognition of Pulsar Signals
      Recently, the associate professor Hao Shan in the Xinjiang Astronomical Observatory (XAO) of Chinese Academy of Sciences (CAS) implemented classification and recognition for 401 observed radio pulsar signals in the frequency range of 1.4...
    • Jul 24, 2015
      Professor Christian Henkel from Max Planck Institute for Radio Astronomy, Germany, Visited Xinjiang Astronomical Observatory
      During June 23rd to July 22nd, 2015, Professor Christian Henkel, the Distinguished Research Fellow in Xinjiang Astronomical Observatory (XAO), from Max Planck Institute for Radio Astronomy visited XAO.During his visit, Professor Henkel h...
    • Jul 22, 2014
      Pulsar wind model for the spin-down behavior of intermittent pulsars
      Intermittent pulsars are part-time radio pulsars. They have higher slow down rates in the on state (radio-loud) than in the off state (radio-quiet). This gives evidence that particle wind may play an important role in pulsar spin-down.LI...
    • Jul 22, 2014
      Electron Cyclotron Maser Emission in Coronal Arches and Solar Radio Type V Bursts
      According to the close association of type V solar bursts with type III bursts, we propose that solar radio type V bursts are excited by the electron cyclotron maser instability. The work by J. F. Tang, D. J. Wu and C. M. Tan has been pu...
    • Nov 25, 2013
      Particle Simulations Reveal Small-Scale Energy Dissipation of Solar Storm
      Because the transportation of energy from a solar storm is a large scale problem, in the long term, the Magnetohydrodynamics (MHD) method can better resolve processes related to transportation of the solar wind in the heliosphere.However...
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