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Soft X-ray spectral fits of Geminga with model neutron star atmospheresThe spectrum of the soft X-ray pulsar Geminga consists of two components, a softer one which can be interpreted as thermal-like radiation from the surface of the neutron star, and a harder one interpreted as radiation from a polar cap heated by relativistic particles. We have fitted the soft spectrum using a detailed magnetized hydrogen atmosphere model. The fitting parameters are the hydrogen column density, the effective temperature T(sub eff), the gravitational redshift z, and the distance to radius ratio, for different values of the magnetic field B. The best fits for this model are obtained when B less than or approximately 1 x 10(exp 12) G and z lies on the upper boundary of the explored range (z = 0.45). The values of T(sub eff) approximately = (2-3) x 10(exp 5) K are a factor of 2-3 times lower than the value of T(sub eff) obtained for blackbody fits with the same z. The lower T(sub eff) increases the compatibility with some proposed schemes for fast neutrino cooling of neutron stars (NSs) by the direct Urca process or by exotic matter, but conventional cooling cannot be excluded. The hydrogen atmosphere fits also imply a smaller distance to Geminga than that inferred from a blackbody fit. An accurate evaluation of the distance would require a better knowledge of the ROSAT Position Sensitive Proportional Counter (PSPC) response to the low-energy region of the incident spectrum. Our modeling of the soft component with a cooler magnetized atmosphere also implies that the hard-component fit requires a characteristic temperature which is higher (by a factor of approximately 2-3) and a surface area which is smaller (by a factor of 10(exp 3), compared to previous blackbody fits.
Document ID
19950038085
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
External Source(s)
Authors
Meyer, R. D.
(Penn State Univ. University Park, PA, United States)
Pavlov, G. G.
(Penn State Univ. University Park, PA, United States)
Meszaros, P.
(Penn State Univ. University Park, PA, United States)
Date Acquired
August 16, 2013
Publication Date
September 20, 1994
Publication Information
Publication: Astrophysical Journal, Part 1
Volume: 433
Issue: 1
ISSN: 0004-637X
Subject Category
Astronomy
Accession Number
95A69684
Funding Number(s)
CONTRACT_GRANT: NSF AST-88-15266
CONTRACT_GRANT: NAGW-1522
Distribution Limits
Public
Copyright
Other

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