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      The Most Luminous Supernova ASASSN-15lh: Signature of a Newborn Rapidly-Rotating Strange Quark Star

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          Abstract

          In this paper we show that the most luminous supernova discovered very recently, ASASSN-15lh, could have been powered by a newborn ultra-strongly-magnetized pulsar, which initially rotates near the Kepler limit. We find that if this pulsar is a neutron star, its rotational energy could be quickly lost as a result of gravitational-radiation-driven r-mode instability; if it is a strange quark star, however, this instability is highly suppressed due to a large bulk viscosity associated with the nonleptonic weak interaction among quarks and thus most of its rotational energy could be extracted to drive ASASSN-15lh. Therefore, we conclude that such an ultra-energetic supernova provides a possible signature for the birth of a strange quark star.

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          Author and article information

          Journal
          2015-08-31
          2015-12-23
          Article
          10.3847/0004-637X/817/2/132
          1508.07745
          c76b0fbb-c416-4593-b5fb-d29ff4819aa1

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

          History
          Custom metadata
          6 pages, title changed, one figure added, conclusions unchanged, accepted for publication in ApJ
          astro-ph.HE

          High energy astrophysical phenomena
          High energy astrophysical phenomena

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