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April 29, 20260 citations

The NuSTAR view of ultra-compact X-ray binaries

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ABA. BorgheseMPM. Armas PadillaTMT. Muñoz-Darias

Key Points

  • This work aims to analyze the spectral properties of ultra-compact X-ray binaries (UCXBs).
  • Conducted a spectral and timing study of 11 confirmed UCXBs using archival observations
  • Utilized X-ray colours and fractional root mean square values to assess X-ray states
  • Applied a three-component model for spectral analysis of neutron star LMXBs
  • Discovered a cold hard state in the slow X-ray pulsar 4U,1626--67 with an electron temperature of ∼6 keV
  • Reported similar spectral properties between UCXBs and LMXBs across different X-ray states
  • Identified higher Comptonisation fractions in soft states of UCXBs compared to typical LMXBs despite limited statistics

Abstract

Ultra-compact X-ray binaries (UCXBs) are a subclass of low-mass X-ray binaries (LMXBs) characterised by tight orbits and hydrogen-poor donor stars. We present a spectral and timing study in the hard X-ray band of 11 of the 20 confirmed UCXBs, based on 37 archival νs observations. Using both X-ray colours and fractional root mean square values, we show that our sample spans the hard, soft, and intermediate X-ray states. Subsequently, we performed an X-ray spectral analysis using, when data allowed, the three-component model -- an approach increasingly adopted for neutron star LMXBs. This work represents the largest LMXB sample analysed to date with this methodology. We focus on the properties of the X-ray continuum and report typical values for each X-ray state. Overall, UCXBs exhibit similar spectral properties to their longer-period counterparts, suggesting no major differences in the innermost regions of X-ray binaries regardless of disc size or chemical composition. A possible exception is found in the soft-state sample, which shows Comptonisation fractions higher than those typically observed in regular LMXBs, although the statistics remain limited. Finally, we discuss the case of the slow X-ray pulsar 4U,1626--67, where we report the discovery of a very cold hard state with an electron temperature of ∼6 keV -- comparable to those usually observed in soft states of neutron-star LMXBs.

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Cite This Study

Borghese et al. (2026) studied this question.

synapsesocial.com/papers/69f154e0879cb923c49453a0https://doi.org/10.1051/0004-6361/202659539/pdf
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