Literature DB >> 27689265

Dense Axion Stars.

Eric Braaten1, Abhishek Mohapatra1, Hong Zhang1.   

Abstract

If the dark matter particles are axions, gravity can cause them to coalesce into axion stars, which are stable gravitationally bound systems of axions. In the previously known solutions for axion stars, gravity and the attractive force between pairs of axions are balanced by the kinetic pressure. The mass of these dilute axion stars cannot exceed a critical mass, which is about 10^{-14}M_{⊙} if the axion mass is 10^{-4}  eV. We study axion stars using a simple approximation to the effective potential of the nonrelativistic effective field theory for axions. We find a new branch of dense axion stars in which gravity is balanced by the mean-field pressure of the axion Bose-Einstein condensate. The mass on this branch ranges from about 10^{-20}M_{⊙} to about M_{⊙}. If a dilute axion star with the critical mass accretes additional axions and collapses, it could produce a bosenova, leaving a dense axion star as the remnant.

Year:  2016        PMID: 27689265     DOI: 10.1103/PhysRevLett.117.121801

Source DB:  PubMed          Journal:  Phys Rev Lett        ISSN: 0031-9007            Impact factor:   9.161


  1 in total

1.  Search for topological defect dark matter with a global network of optical magnetometers.

Authors:  Samer Afach; Ben C Buchler; Dmitry Budker; Conner Dailey; Andrei Derevianko; Vincent Dumont; Nataniel L Figueroa; Ilja Gerhardt; Zoran D Grujić; Hong Guo; Chuanpeng Hao; Paul S Hamilton; Morgan Hedges; Derek F Jackson Kimball; Dongok Kim; Sami Khamis; Thomas Kornack; Victor Lebedev; Zheng-Tian Lu; Hector Masia-Roig; Madeline Monroy; Mikhail Padniuk; Christopher A Palm; Sun Yool Park; Karun V Paul; Alexander Penaflor; Xiang Peng; Maxim Pospelov; Rayshaun Preston; Szymon Pustelny; Theo Scholtes; Perrin C Segura; Yannis K Semertzidis; Dong Sheng; Yun Chang Shin; Joseph A Smiga; Jason E Stalnaker; Ibrahim Sulai; Dhruv Tandon; Tao Wang; Antoine Weis; Arne Wickenbrock; Tatum Wilson; Teng Wu; David Wurm; Wei Xiao; Yucheng Yang; Dongrui Yu; Jianwei Zhang
Journal:  Nat Phys       Date:  2021-12-07       Impact factor: 20.034

  1 in total

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