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Gravitationally redshifted absorption lines in the X-ray burst spectra of a neutron star

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arxiv astro-ph/0211126 v1 pith:Z537OLMU submitted 2002-11-06 astro-ph

Gravitationally redshifted absorption lines in the X-ray burst spectra of a neutron star

classification astro-ph
keywords neutronstarlinesmatterredshiftstarsabsorptiondirect
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The fundamental properties of neutron stars provide a direct test of the equation of state of cold nuclear matter, a relationship between pressure and density that is determined by the physics of the strong interactions between the particles that constitute the star. The most straightforward method of determining these properties is by measuring the gravitational redshift of spectral lines produced in the neutron star photosphere. The equation of state implies a mass-radius relation, while a measurement of the gravitational redshift at the surface of a neutron star provides a direct constraint on the mass-to-radius ratio. Here we report the discovery of signficant absorption lines in the spectra of 28 bursts of the low-mass X-ray binary EXO 0748-676. We identify the most signficant features with the Fe XXVI and XXV n=2-3 and O VIII n=1-2 transitions, all with a redshift of z=0.35, identical within small uncertainties for the respective transitions. For an astrophysically plausible range of masses (M ~ 1.3-2.0 M_solar), this value is completely consistent with models of neutron stars composed of normal nuclear matter, while it excludes some models in which the neutron stars are made of more exotic matter.

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Cited by 4 Pith papers

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    Anisotropic magnetized neutron-star–wormhole models predict ultracompact objects with masses above 8 solar masses, surface redshifts above 1.5, and echo times of order 10^-2–10^-1 ms.

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