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Radio Astronomy and Cosmology

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Product Code: 9789027708397
ISBN13: 9789027708397
Condition: New
$61.47

Radio Astronomy and Cosmology

$61.47
 
337 F(e) = (z) where the angle between the directions III and 112 is equal to 8. r is the angular diameter effective distance of the epoch for recombination. F (8) ve have F(e): f (e) (S" ) e. . is a Bessel function. It is assumed here that the spectrum of gravitational waves takes the form 1 hI'::: hoK for all relevant wavelengths, a is beam width of the radio antenna, d= d, and is the duration of the process of recombinations in -time. The results for different beam widths are shown in Fig. 1. 338 I. D. NOVIKOV 1-. . . -__ 0. 5 1 1. 5 2 e' 0. 5 o and for a l' (solid line) and Fig. 1. The function f(8) for n for a = 2' (dotted line). These formula should be used in analysing the implications of future observations. Comparison with the observational data now available enables us to establish an upper limit for the energy density of long gravitational waves. This method is most sensitive for gravitational waves with A ct The fluctuations; due to these waves have scale 0. 03 GW rec 4 radian. If, according to modern observations, we take;


Author: D. L. Jauncey
Publisher: Springer
Publication Date: 28398
Number of Pages: 416 pages
Binding: Nature
ISBN-10: 9027708398
ISBN-13: 9789027708397
 

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