Cyclical accretion regime change in the slow X-ray pulsar 4U 0114+65 observed with Chandra
arXiv:2501.08702 · doi:10.1051/0004-6361/202452789
Abstract
4U 0114+65 is a high-mass X-ray binary system formed by the luminous supergiant B1Ia, known as V{*} V662 Cas, and one of the slowest rotating neutron stars (NS) with a spin period of about 2.6 hours. This fact provides a rare opportunity to study interesting details of the accretion within each individual pulse of the compact object. In this paper, we analyze 200 ks of Chandra grating data, divided into 9 uninterrupted observations around the orbit. The changes in the circumstellar absorption column through the orbit suggest an orbital inclination of with respect to the observer and a companion mass-loss rate of 8.6 10 solar masses yr. The peaks of the NS pulse show a large pulse-to-pulse variability. Three of them show an evolution from a brighter regime to a weaker one. We propose that the efficiency of Compton cooling in this source fluctuates throughout an accumulation cycle. After significant depletion of matter within the magnetosphere, since the settling velocity is 2 times lower than the free-fall velocity, the source gradually accumulates matter until the density exceeds a critical threshold. This increase in density triggers a transition to a more efficient Compton cooling regime, leading to a higher mass accretion rate and consequently to an increased brightness.
References in corpus (15)
- Estimating distances from parallaxes. V: Geometric and photogeometric distances to 1.47 billion stars in Gaia Early Data Release 3
- Towards a unified view of inhomogeneous stellar winds in isolated supergiant stars and supergiant high mass X-ray binaries
- Magnetar-like activity from the central compact object in the SNR RCW103
- Modeling Ultraviolet Wind Line Variability in Massive Hot Stars
- Evidence for the magnetar nature of 1E 161348-5055 in RCW 103
- The X-ray binary 2S0114+650=LSI+65 010:A slow pulsar or tidally-induced pulsations?
- X-ray irradiation of the winds in binaries with massive components
- Joint H-alpha and X-ray Observations of Massive X-ray Binaries. I. The B-Supergiant System LS I +65 010 = 2S 0114+650
- CIR Modulation of the X-ray Flux from the O7.5 III(n)((f)) Star xi Persei?
- Evolution of Spin, Orbital, and Superorbital Modulations of 4U 0114+650
- Wind accretion: Theory and Observations
- XMM-Newton spectroscopy of the accreting magnetar candidate 4U0114+65
- Supergiant Fast X-ray Transients uncovered by the EXTraS project: flares reveal the development of magnetospheric instability in accreting neutron stars
- On the spin-down mechanism of the X-ray pulsar 4U 2206+54
- Nustar observation of the binary system 4U 0114+65