A NICER Look at the Aql X-1 Hard State

作者:Bult Peter; Arzoumanian Zaven; Cackett Edward M; Chakrabarty Deepto; Gendreau Keith C; Guillot Sebastien; Homan Jeroen; Jaisawal Gaurava K; Keek Laurens; Kenyon Steve; Lamb Frederick K; Ludlam Renee; Mahmoodifar Simin; Markwardt Craig; Miller Jon M; Prigozhin Gregory; Soong Yang; Strohmayer Tod E; Uttley Phil
来源:Astrophysical Journal Letters, 2018, 859(1): L1.
DOI:10.3847/2041-8213/aac2e2

摘要

We report on a spectral-timing analysis of the neutron star low-mass X-ray binary (LMXB) Aql X-1 with the Neutron Star Interior Composition Explorer (NICER) on the International Space Station (ISS). Aql X-1 was observed with NICER during a dim outburst in 2017 July, collecting approximately 50 ks of good exposure. The spectral and timing properties of the source correspond to that of a (hard) extreme island state in the atoll classification. We find that the fractional amplitude of the low-frequency (<0.3 Hz) band-limited noise shows a dramatic turnover as a function of energy: it peaks at 0.5 keV with nearly 25% rms, drops to 12% rms at 2 keV, and rises to 15% rms at 10 keV. Through the analysis of covariance spectra, we demonstrate that band-limited noise exists in both the soft thermal emission and the power-law emission. Additionally, we measure hard time lags, indicating the thermal emission at 0.5 keV leads the power-law emission at 10 keV on a timescale of similar to 100 ms at 0.3 Hz to similar to 10 ms at 3 Hz. Our results demonstrate that the thermal emission in the hard state is intrinsically variable, and is driving the modulation of the higher energy power-law. Interpreting the thermal spectrum as disk emission, we find that our results are consistent with the disk propagation model proposed for accretion onto black holes.

  • 出版日期2018-5-20
  • 单位MIT