X-ray Observations of Parsec-Scale Tails behind Two Middle-Aged Pulsars
arXiv:0802.2963 · doi:10.1086/589145
Abstract
Chandra and XMM-Newton resolved extremely long tails behind two middle-aged pulsars, J1509-5850 and J1740+1000. The tail of PSR J1509-5850 is discernible up to 5.6' from the pulsar (6.5 pc at a distance of 4 kpc), with a flux of 2*10^{-13} erg s^{-1} cm^{-2} in 0.5-8 keV. The tail spectrum fits an absorbed power-law (PL) model with the photon index of 2.3\pm0.2, corresponding to the 0.5-8 keV luminosity of 1*10^{33} ergs s^{-1}, for n_H= 2.1*10^{22} cm^{-2}. The tail of PSR J1740+1000 is firmly detected up to 5' (2 pc at a 1.4 kpc distance), with a flux of 6*10^{-14} ergs cm^{-2} s^{-1} in 0.4-10 keV. The PL fit yields photon index of 1.4-1.5 and n_H=1*10^{21} cm^{-2}. The large extent of the tails suggests that the bulk flow in the tails starts as mildly relativistic downstream of the termination shock, and then gradually decelerates. Within the observed extent of the J1509-5850 tail, the average flow speed exceeds 5,000 km s^{-1}, and the equipartition magnetic field is a few times 10^{-5} G. For the J1740+1000 tail, the equipartition field is a factor of a few lower. The harder spectrum of the J1740+1000 tail implies either less efficient cooling or a harder spectrum of injected electrons. For the high-latitude PSR J1740+1000, the orientation of the tail on the sky shows that the pulsar is moving toward the Galactic plane, which means that it was born from a halo-star progenitor. The comparison between the J1509 and J1740 tails and the X-ray tails of other pulsars shows that the X-ray radiation efficiency correlates poorly with the pulsar spin-down luminosity or age. The X-ray efficiencies of the ram-pressure confined pulsar wind nebulae (PWNe) are systematically higher than those of PWNe around slowly moving pulsars with similar spin-down parameters.
14 pages, 16 figures and 5 tables
References in corpus (7)
- Pulsar Wind Nebulae in the Chandra Era
- Pulsar Parallaxes at 5 GHz with the Very Long Baseline Array
- CHANDRA ACIS Spectroscopy of N157B -- A Young Composite Supernova Remnant in a Superbubble
- Three-dimensional hydrodynamic simulations of asymmetric pulsar wind bow shocks
- Chandra observations of the pulsar PSR B1929+10 and its environment
- TeV source HESS J1804-216 in X-rays and other wavelengths
- Radio and X-ray nebulae associated with PSR J1509-5850
Cited by in corpus (22)
- Pulsar Wind Nebulae Created by Fast-Moving Pulsars
- Pulsar-wind nebulae and magnetar outflows: observations at radio, X-ray, and gamma-ray wavelengths
- Chandra observations of the pulsar PSR B1929+10 and its environment
- On the origin of jet-like features in bow shock pulsar wind nebulae
- Deep Chandra Observations of the Pulsar Wind Nebula Created by PSR B0355+54
- Full-3D relativistic MHD simulations of Bow Shock Pulsar Wind Nebulae: dynamics
- New X-ray observations of the Geminga pulsar wind nebula
- Flux-density spectral analysis for several pulsars and two newly-identified gigahertz-peaked spectra
- The Tail of PSR J0002+6216 and the Supernova Remnant CTB 1
- Thermal and non-thermal X-ray emission from the rotation-powered radio/-ray pulsar PSR J1740+1000
- A Search for TeV Gamma-ray Emission from Pulsar Tails by VERITAS
- Investigating CXOU J163802.6-471358: a new pulsar wind nebula in the Norma region?
- A Catalog of Pulsar X-ray Filaments
- The significance of low frequency interferometric observations for the GPS pulsar flux estimation: the case of J1740+1000
- Chandra observation of the relativistic binary J1906+0746
- The Advanced X-ray Imaging Satellite
- Radio Study of the Pulsar Wind Nebula Powered by PSR B1706-44
- TRAPUM upper limits on pulsed radio emission for SMC X-ray pulsar J0058-7218
- XMM-Newton and Chandra observations of the unidentified Fermi-LAT source 3FGL J1016.5-6034: A Young Pulsar with a Nebula?
- Ultra-high-energy -ray emission associated with the tail of a bow-shock pulsar wind nebula
- Investigating the mysterious nature of 1LHAASO J1740+0948u through deep XMM-Newton observations
- Chandra Proper Motions and Milliarcsecond Astrometry of Nineteen Pulsars