The kilohertz quasi-periodic oscillations during the Z and atoll phases of the unique transient XTE J1701--462
A. Sanna (1), M. Mendez (1), D. Altamirano (2), J. Homan (3), P., Casella (4), T. Belloni (5), D. Lin (6), M. van der Klis (2), R. Wijnands (2), ((1) Groningen, (2) Amsterdam, (3) MIT, (4) Southampton, (5) INAF-OAB, (6), CESR-Toulouse)

TL;DR
This study analyzes 866 observations of XTE J1701-462, revealing significant differences in kHz QPO properties between its Z and atoll phases, indicating accretion flow properties influence QPO characteristics beyond geometric effects.
Contribution
It demonstrates that QPO coherence and amplitude vary with accretion flow state in the same neutron star, challenging models linking these properties solely to disk radius or spacetime geometry.
Findings
Lower kHz QPOs have higher coherence and rms in atoll phase.
QPO properties differ significantly between Z and atoll phases.
QPO coherence and amplitude are influenced by accretion flow properties.
Abstract
We analysed 866 observations of the neutron-star low-mass X-ray binary XTE J1701-462 during its 2006-2007 outburst. XTE J1701-462 is the only example so far of a source that during an outburst showed, beyond any doubt, spectral and timing characteristics both of the Z and atoll type. We found that the lower kHz QPO in the atoll phase has a significantly higher coherence and fractional rms amplitude than any of the kHz QPOs seen during the Z phase, and that in the same frequency range, atoll lower kHz QPOs show coherence and fractional rms amplitude, respectively, 2 and 3 times larger than the Z kHz QPOs. Out of the 707 observations in the Z phase, there is no single observation in which the kHz QPOs have a coherence or rms amplitude similar to those seen when XTE J1701-462 was in the atoll phase, even though the total exposure time was about 5 times longer in the Z than in the atoll…
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