Investigating the origin of optical and X-ray pulsations of the transitional millisecond pulsar PSR J1023+0038
arXiv:2211.12975 · doi:10.1051/0004-6361/202244637
Abstract
PSR J1023+0038 is the first millisecond pulsar that was ever observed as an optical and UV pulsar. So far, it is the only optical transitional millisecond pulsar. The rotation- and accretion-powered emission mechanisms hardly individually explain the observed characteristics of optical pulsations. A synergistic model, combining these standard emission processes, was proposed to explain the origin of the X-ray/UV/optical pulsations. We study the phase lag between the pulses in the optical and X-ray bands to gain insight into the physical mechanisms that cause it. We performed a detailed timing analysis of simultaneous or quasi-simultaneous observations in the X-ray band, acquired with the XMM-Newton and NICER satellites, and in the optical band, with the fast photometers SiFAP2 (mounted at the 3.6 m Telescopio Nazionale Galileo) and Aqueye+ (mounted at the 1.8 m Copernicus Telescope). We estimated the time lag of the optical pulsation with respect to that in the X-rays by modeling the folded pulse profiles with two harmonic components. Optical pulses lag the X-ray pulses by 150 s in observations acquired with instruments (NICER and Aqueye+) whose absolute timing uncertainty is much smaller than the measured lag. We also show that the phase lag between optical and X-ray pulsations lies in a limited range of values, (0 0.15), which is maintained over timescales of about five years. This indicates that both pulsations originate from the same region, and it supports the hypothesis of a common emission mechanism. Our results are interpreted in the shock-driven mini pulsar nebula scenario. This scenario suggests that optical and X-ray pulses are produced by synchrotron emission from the shock that formed within a few light cylinder radii away ( 100 km) from the pulsar, where its striped wind encounters the accretion disk inflow.
13 pages, 6 figures, 5 tables, accepted for publication in A&A
References in corpus (18)
- TEMPO2, a new pulsar timing package. I: Overview
- A Radio Pulsar/X-ray Binary Link
- An Empirical Background Model for the NICER X-ray Timing Instrument
- Pulsar Wind Nebulae in the Chandra Era
- X-ray states of redback millisecond pulsars
- Identification of the High-Energy Gamma-Ray Source 3FGL J1544.6-1125 as a Transitional Millisecond Pulsar Binary in an Accreting State
- Timing Observations of PSR J1023+0038 During a Low-Mass X-ray Binary State
- Transitional millisecond pulsars
- General-Relativistic Simulations of Four States of Accretion onto Millisecond Pulsars
- Prolonged sub-luminous state of the new transitional pulsar candidate CXOU J110926.4-650224
- Precise optical timing of PSR J1023+0038, the first millisecond pulsar detected with Aqueye+ in Asiago
- Orbital Dynamics of Candidate Transitional Millisecond Pulsar 3FGL J1544.6-1125: An unusually face-on system
- Optical and ultraviolet pulsed emission from an accreting millisecond pulsar
- Aqueye+: a new ultrafast single photon counter for optical high time resolution astrophysics
- UV and X-ray pulse amplitude variability in the transitional millisecond pulsar PSR J1023+0038
- Simultaneous X-ray and radio observations of the transitional millisecond pulsar candidate CXOU J110926.4-650224. The discovery of a variable radio counterpart
- Spin-down rate of the transitional millisecond pulsar PSR J1023+0038 in the optical band with Aqueye+
- Discovery of UV millisecond pulsations and moding in the low mass X-ray binary state of transitional millisecond pulsar J1023+0038
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- Identification and characterisation of the gamma-ray counterpart of the transitional pulsar candidate CXOU J110926.4-650224
- Detection of low-luminosity X-ray pulsations from the accreting millisecond pulsar IGR J17511-3057: An ever-thinning thread between bright accretion and sub-luminous states
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