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A Radio Polarimeter-Spectrometer

Published online by Cambridge University Press:  25 April 2016

P.J. Hall
Affiliation:
Department of Physics, University of Tasmania
P.A. Hamilton
Affiliation:
Department of Physics, University of Tasmania
P.M. McCulloch
Affiliation:
Department of Physics, University of Tasmania

Extract

The polarization characteristics of celestial radio signals are a major part of the observable nature of the radiation. Stokes polarimeters, instruments for measuring the complete polarization properties of radiation, are usually narrowband devices in order to minimise depolarization effects originating in the source or in the medium through which the radiation propagates. To measure the broadband polarization behaviour of a source, a Stokes polarimeter-spectrometer is required. Such an instrument allows the frequency dependence of each Stokes parameter to be deduced, making it possible to apply corrections to each parameter to account for known forms of polarization distortion (e.g. Faraday rotation). It is also possible to remove delay distortion from impulsive sources such as pulsars by processing the spectrometer data according to the usual de-dispersion algorithms. In some studies observation of distortion phenomena may be the major aim and a polarimeter spectrometer greatly facilitates measurements of these effects.

Type
Contributions
Copyright
Copyright © Astronomical Society of Australia 1983

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References

Gautier, H., ‘Digital processors using SAW devices’. Proc. IEEE Ultrasonics Symposium, pp. 206219 (1981).Google Scholar
Hall, P.J., Electron. Lett. 18, 699 (1982).CrossRefGoogle Scholar
Hall, P.J., Hamilton, P.A., Lyne, A.G., and McCulloch, P.M., ‘SAW spectrum analysers in radioastronomy’. Proc. IEE Coll. SAW Devices and Systems, (1982).Google Scholar
Hall, P.J., Hamilton, P.A., and McCulloch, P.M., J. Electron. Elect. Eng. Aust., 2, 150 (1982).Google Scholar
Harrington, J.N., and Nelson, R.B., Microwave 17, No. 9, (1974).Google Scholar
Kraus, J.D., ‘Radioastronomy’, McGraw-Hill pp. 108128 (1966).Google Scholar
Moule, G.L., Proc. Inst. Elect. Eng., 129 F, 180 (1982).Google Scholar