2006A&A...445..653M


Query : 2006A&A...445..653M

2006A&A...445..653M - Astronomy and Astrophysics, volume 445, 653-660 (2006/1-2)

The BeppoSAX view of the galactic high-mass X-ray binary 4U 0114+65.

MASETTI N., ORLANDINI M., DAL FIUME D., DEL SORDO S., AMATI L., FRONTERA F., PALAZZI E. and SANTANGELO A.

Abstract (from CDS):

A pointed observation of the galactic high-mass X-ray binary 4U 0114+65 was carried out with BeppoSAX to compare the X-ray spectral and timing characteristics observed by this satellite over the broadest range of energies thus far (1.5-100keV) with the information previously obtained with other spacecraft. The light curve of 4U 0114+65 shows a large flare at the beginning of the BeppoSAX pointing and no significant hardness evolution either during the flare or in the low state occurring after the flare itself. The modulation at ∼2.7h, attributed to the accreting neutron star (NS) spin periodicity, is not significantly detected in our data, although fluctuations with timescales of ∼3h can be seen in the 2-10keV light curve. Shorter modulations down to timescales of minutes are also found and interpreted as due to accretion of matter onto the NS. The flaring and the low state spectra of 4U 0114+65 can be equally well fitted either with a power law modulated by a high-energy exponential cutoff or with a Comptonization model. During the low state the presence, although tentative, of a thermal component (with kT∼0.3keV) at low energies, possibly produced by an ionized plasma cloud around the NS, cannot be excluded. Contrary to previous claims, a cyclotron resonant feature in absorption at ∼22keV was not detected in the BeppoSAX spectroscopic data, whereas evidence for a Fe emission line around 6.4keV is found only during the low state emission. Using all of the above information, a scenario for the system in which the NS is embedded in, and accreting from, a low angular momentum gas cloud is envisaged.

Abstract Copyright:

Journal keyword(s): stars: binaries: close - X-rays: binaries - stars: neutron - stars: individual: 4U 0114+65 - accretion, accretion disks

Simbad objects: 3

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Number of rows : 3
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 V* V662 Cas HXB 01 18 02.6976641952 +65 17 29.829200388 12.27 11.99 11.14 10.33 9.58 B1Iae 271 0
2 V* GP Vel HXB 09 02 06.8608812864 -40 33 16.899168060 6.85 7.37 6.87 6.31 6.05 B0.5Ia 1504 0
3 NAME OAO 1657-41 HXB 17 00 48.884 -41 39 21.46           Ofpe/WN9 247 0

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