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Numerical analysis of quasiperiodic oscillations in the Hartle-Thorne spacetime

Numerical analysis of quasiperiodic oscillations in the Hartle-Thorne spacetime

来源:Arxiv_logoArxiv
英文摘要

We numerically analyze quasiperiodic oscillations (QPOs) using a well-established spacetime model with neutron star sources. Within the framework of general relativity, we present expressions for the fundamental frequencies of test particles in the gravitational field of a slowly rotating and slightly deformed compact object defined by the Hartle-Thorne (HT) metric. Using the Relativistic Precession Model (RPM) formulated by Stella and Morinsk, we examine quasiperiodic oscillation data from eight neutron stars in low-mass X-ray binary systems. Employing Markov Chain Monte Carlo analyses with the Metropolis-Hastings algorithm, we estimate 1-$\sigma$ and 2-$\sigma$ error bars. Finally, we compare our results with predictions from the Schwarzschild, Lense-Thirring, and Kerr metrics, demonstrating that three of the eight sources can be well explained within the Hartle-Thorne model.

K. Boshkayev、T. Konysbayev、Ye. Kurmanov、M. Muccino、H. Quevedo

天文学物理学

K. Boshkayev,T. Konysbayev,Ye. Kurmanov,M. Muccino,H. Quevedo.Numerical analysis of quasiperiodic oscillations in the Hartle-Thorne spacetime[EB/OL].(2025-06-13)[2025-07-16].https://arxiv.org/abs/2506.11581.点此复制

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