The diffraction of galactic radio waves as a method of investigating the irregular structure of the ionosphere

Author:

Abstract

The amplitudes of the radio waves received from a radio star at two points separated by about 1 km have been studied and compared. The results indicate that the variations of phase and amplitude at one point can be ascribed to the steady drift of an irregular wavepattern over the ground. It is shown how the structure and movement of the wave-pattern can be deduced from the observations. The irregular wave-pattern across the ground can be thought of as a diffraction pattern produced by the passage of the waves through a portion of the ionosphere which imposes irregular changes of phase on it, and it is shown how the ionospheric characteristics can be deduced. The ionospheric irregularities are shown to have a lateral extent of the order 2 to 10 km, and a variation of electron content of about 5 × 10 9 electrons per cm. 2 It is deduced that the irregularities are at a height of about 400 km. They are most pronounced around midnight and exhibit little annual variation. The irregular portion of the ionosphere moves with a steady wind-like motion with a velocity of the order 100 to 300 m/s. The velocity decreases after midnight, and large velocities are associated with periods of magnetic disturbance.

Publisher

The Royal Society

Subject

Pharmacology (medical)

Cited by 137 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. The observations of localize ionospheric scintillation structure by FORMOSAT-7/COSMIC-2 Tri-band Beacon network;Terrestrial, Atmospheric and Oceanic Sciences;2022-04-12

2. Antony Hewish. 11 May 1924—13 September 2021;Biographical Memoirs of Fellows of the Royal Society;2022-03-16

3. Probabilistic direction-dependent ionospheric calibration for LOFAR-HBA;Astronomy & Astrophysics;2020-03

4. Radio astronomy and the rise of high-energy astrophysics two anniversaries;International Journal of Modern Physics D;2019-01

5. Propagation Effects: Ionized Media;Astronomy and Astrophysics Library;2017

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