What if pulsars are born as strange stars?
arXiv:astro-ph/0006021 · doi:10.1016/S0927-6505(00)00154-7
Abstract
The possibility and the implications of the idea, that pulsars are born as strange stars, are explored. Strange stars are very likely to have atmospheres with typical mass of but bare polar caps almost throughout their lifetimes, if they are produced during supernova explosions. A direct consequence of the bare polar cap is that the binding energies of both positively and negatively charged particles at the bare quark surface are nearly infinity, so that the vacuum polar gap sparking scenario as proposed by Ruderman & Sutherland should operate above the cap, regardless of the sense of the magnetic pole with respect to the rotational pole. Heat can not accumulate on the polar cap region due to the large thermal conductivity on the bare quark surface. We test this ``bare polar cap strange star'' (BPCSS) idea with the present broad band emission data of pulsars, and propose several possible criteria to distinguish BPCSSs from neutron stars.
31 pages in Latex. Accepted by AstroParticle Physics
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- Vacuum gaps in pulsars and PSR J2144-3933
- Neutrino Emission and Mass Ejection in Quark Novae
- Thermal Featureless Spectrum: Evidence for Bare Strange Stars
- Quakes in Solid Quark Stars
- Fast spinning strange stars: possible ways to constrain interacting quark matter parameters
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- The birth of strange stars and their dynamo-originated magnetic fields
- Fast Radio Bursts from the collapse of Strange Star Crusts
- Strange stars with different quark mass scalings
- Searching for strange quark matter objects in exoplanets
- Hybrid Strangeon Stars
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- Cooling Properties of Cloudy Bag Strange Stars
- Ultra-high energy cosmic rays from Quark Novae
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- AXPs & SGRs: Magnetar or Quarctar?