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      On the radio detection of multiple-exomoon systems due to plasma torus sharing

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          Abstract

          The idea of single exomoon detection due to the radio emissions caused by its interaction with the host exoplanet is extended to multiple-exomoon systems. The characteristic radio emissions are made possible in part by plasma from the exomoons own ionosphere (Noyola et. al. 2014). In this work, it is demonstrated that neighboring exomoons and the exoplanetary magnetosphere could also provide enough plasma to generate a detectable signal. In particular, the plasma-torus-sharing phenomenon is found to be particularly well suited to facilitate the radio detection of plasma-deficient exomoons. The efficiency of this process is evaluated, and the predicted power and frequency of the resulting radio signals are presented.

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          Author and article information

          Journal
          2016-03-06
          Article
          10.3847/0004-637X/821/2/97
          1603.01862
          36f08fa2-51fb-4eac-9f51-f01f2ab03083

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

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          Accepted for publication at ApJ (13 pages, 7 Figs.)
          astro-ph.EP

          Planetary astrophysics
          Planetary astrophysics

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