D 2017

A one-parametric formula relating the frequencies of twin-peak quasi-periodic oscillations

TÖRÖK, Gabriel, Kateřina GOLUCHOVÁ, Eva ŠRÁMKOVÁ, Jiří HORÁK, Pavel BAKALA et. al.

Basic information

Original name

A one-parametric formula relating the frequencies of twin-peak quasi-periodic oscillations

Authors

TÖRÖK, Gabriel (203 Czech Republic, guarantor, belonging to the institution), Kateřina GOLUCHOVÁ (203 Czech Republic, belonging to the institution), Eva ŠRÁMKOVÁ (203 Czech Republic, belonging to the institution), Jiří HORÁK (203 Czech Republic), Pavel BAKALA (203 Czech Republic, belonging to the institution) and Martin URBANEC (203 Czech Republic, belonging to the institution)

Edition

1. vyd. Opava (Česká republika), Proceedings of RAGtime 17–19: Workshops on black holes and neutron stars, 17–19/23–26 Oct., 1–5 Nov. 2015/2016/2017, Opava, Czech Republic, p. 177-193, 17 pp. 2017

Publisher

Slezská univerzita v Opavě, Filozoficko–přírodovědecká fakulta v Opavě, Ústav fyziky

Other information

Language

English

Type of outcome

Stať ve sborníku

Field of Study

10308 Astronomy

Country of publisher

Czech Republic

Confidentiality degree

není předmětem státního či obchodního tajemství

Publication form

printed version "print"

References:

RIV identification code

RIV/47813059:19240/17:A0000038

Organization unit

Faculty of Philosophy and Science in Opava

ISBN

978-80-7510-256-0

ISSN

Keywords in English

X-rays: binaries; accretion; accretion disks; stars: neutron

Tags

International impact, Reviewed

Links

GA17-16287S, research and development project. LTI17018, research and development project.
Změněno: 6/4/2018 08:35, RNDr. Jan Hladík, Ph.D.

Abstract

V originále

Timing analysis of X-ray flux in more than a dozen low-mass X-ray binary systems containing a neutron star reveals remarkable correlations between frequencies of two characteristic peaks present in the power-density spectra. We find a simple analytic relation that well reproduces all these individual correlations. We link this relation to a physical model which involves accretion rate modulation caused by an oscillating torus.