I. S. SHKLOVSKY AND LOW-FREQUENCY RADIO ASTRONOMY

DOI: https://doi.org/10.15407/rpra22.01.007

A. A. Konovalenko

Abstract


PACS numbers: 95.55.Jz, 95.30.-k, 95.55.-n 

Purpose: Proving of the high astrophysical significance of the low-frequency radio astronomy (decameter and adjacent hectometer and meter wavelengths), demonstration of the priority results of the Ukrainian low-frequency radio astronomy as well as significant contribution of I. S. Shklovsky to its development.

Design/methodology/approach: The requirements to characteristics
of high efficiency radio telescopes UTR-2, URAN, GURT and to sensitive and interference immune observational methods at low frequencies are formulated by using the theoretical analysis and astrophysical predictions including those I. S. Shklovsky’s.

Findings: New generation radio telescopes UTR-2, URAN, GURT are created and modernized. New observational methods at low frequencies are introduced. Large-scale investigations of the Solar system, Galaxy and Methagalaxy are carried out. They have allowed to detect new objects and phenomena for the continuum, monochromatic, pulse and sporadic cosmic radio emission. The role of I. S. Shklovsky in the development of many low-frequency radio astronomy directions
is noted, too.

Conclusions: The unique possibilities of the low-frequency radio
astronomy which gives new information about the Universe, inaccessible with the other astrophysical methods, are shown. The progress of the low-frequency radio astronomy opens the impressive possibilities for the future. It includes modernization of the largest radio telescopes UTR-2, URAN, NDA and creation of new instruments GURT, NenuFAR, LOFAR, LWA, MWA, SKA as well as making multi-antenna and ground-space experiments. The contribution of outstanding astrophysicist of the XX century I. S. Shklovsky to this part of actual astronomical science is evident, claiming for attention and will never be forgotten.

Key words: low-frequency radio astronomy, radio telescope, recording equipment, Solar system, Galaxy, Methagalaxy

Manuscript submitted 09.02.2017

Radio phys. radio astron. 2017, 21(1): 7-30 

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Keywords


low-frequency radio astronomy; radio telescope; recording equipment; Solar system; Galaxy; Methagalaxy

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