BAKALA, Pavel, Kateřina GOLUCHOVÁ, Zdeněk STUCHLÍK, Eva ŠRÁMKOVÁ, Gabriel TÖRÖK and Martin URBANEC. Restrictions to neutron star models based on twin-peak quasi-periodic oscillations. Cambridge, UK: Cambridge University Press, 2013, p. 524-526. ISBN 978-1-107-03379-5. Available from: https://dx.doi.org/10.1017/S174392131202474X.
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Basic information
Original name Restrictions to neutron star models based on twin-peak quasi-periodic oscillations
Name (in English) Restrictions to neutron star models based on twin-peak quasi-periodic oscillations
Authors BAKALA, Pavel, Kateřina GOLUCHOVÁ, Zdeněk STUCHLÍK, Eva ŠRÁMKOVÁ, Gabriel TÖRÖK and Martin URBANEC.
Edition Cambridge, UK, p. 524-526, 3 pp. 2013.
Publisher Cambridge University Press
Other information
Type of outcome Proceedings paper
Confidentiality degree is not subject to a state or trade secret
WWW www
Organization unit Faculty of Philosophy and Science in Opava
ISBN 978-1-107-03379-5
ISSN 1743-9213
Doi http://dx.doi.org/10.1017/S174392131202474X
Keywords in English X-rays: binaries; stars: neutron; stars: fundamental parameters; stars: rotation
Tags sbornik, UF
Tags International impact
Changed by Changed by: Jan Vlha, učo 48995. Changed: 27/4/2021 09:44.
Abstract
In a series of works - Török et al. (2010, 2012a) and Urbanec et al. (2010a) - we explored restrictions to neutron star properties that are implied by various models of twin-peak quasi-periodic oscillations. Here we sketch an attempt to confront the obtained mass-angular-momentum relations and limits on neutron star compactness with the parameters estimated by assuming various equations of state and the spin frequency of the atoll source 4U 1636-53.
Abstract (in English)
In a series of works - Török et al. (2010, 2012a) and Urbanec et al. (2010a) - we explored restrictions to neutron star properties that are implied by various models of twin-peak quasi-periodic oscillations. Here we sketch an attempt to confront the obtained mass-angular-momentum relations and limits on neutron star compactness with the parameters estimated by assuming various equations of state and the spin frequency of the atoll source 4U 1636-53.
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