Correlations between the frequencies of twin kHz QPOs and spins of neutron stars in LMXBs
De-Hua Wang, Cheng-Min Zhang, Jin-Lu Qu, Yi-Yan Yang

TL;DR
This study explores the relationship between twin kHz QPO frequencies and neutron star spins in LMXBs, revealing a non-uniform ratio distribution and challenging simple models, suggesting magnetosphere-disk interactions as a key factor.
Contribution
It provides a detailed analysis of the correlation between kHz QPOs and NS spins, classifies sources into two groups, and challenges existing models with new statistical insights.
Findings
Distribution of frequency ratio shows a gap at ~0.65.
Two source groups with different Δν/νs relations.
Ratio of ν2 to ν1 clusters around 3:2, unrelated to NS spin.
Abstract
We investigate the correlation between the frequencies of the twin kilohertz quasi-periodic oscillations (kHz QPOs) and the neutron star (NS) spins in low mass X-ray binaries (LMXBs), based on the data sets of 12 sources with simultaneously detected twin kHz QPOs and NS spins, and find that the histogram of the ratio between the frequency difference of twin kHz QPOs ({\Delta}{\nu} = {\nu}2 - {\nu}1) and NS spin {\nu}s shows a non-uniform distribution with a gap at {\Delta}{\nu}/{\nu}s ~ 0.65. We try to classify the 12 sources into two categories according to this gap: (I) The slow rotators with <{\nu}s> ~ 311 Hz, XTE J1807.4-294, 4U 1915-05, IGR J17191-2821, 4U 1702-43, 4U 1728-34 and 4U 0614+09 follow a relation {\Delta}{\nu}/{\nu}s > 0.65; (II) The fast rotators with <{\nu}s> ~ 546 Hz, SAX J1808.4-3658, KS 1731-260, Aql X-1, 4U 1636-53, SAX J1750.8-2900 and 4U 1608-52 satisfy the…
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