Efficient numerical solution to vacuum decay with many fields

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Published 25 January 2017 © 2017 IOP Publishing Ltd and Sissa Medialab srl
, , Citation Ali Masoumi et al JCAP01(2017)051 DOI 10.1088/1475-7516/2017/01/051

1475-7516/2017/01/051

Abstract

Finding numerical solutions describing bubble nucleation is notoriously difficult in more than one field space dimension. Traditional shooting methods fail because of the extreme non-linearity of field evolution over a macroscopic distance as a function of initial conditions. Minimization methods tend to become either slow or imprecise for larger numbers of fields due to their dependence on the high dimensionality of discretized function spaces. We present a new method for finding solutions which is both very efficient and able to cope with the non-linearities. Our method directly integrates the equations of motion except at a small number of junction points, so we do not need to introduce a discrete domain for our functions. The method, based on multiple shooting, typically finds solutions involving three fields in around a minute, and can find solutions for eight fields in about an hour. We include a numerical package for Mathematica which implements the method described here.

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10.1088/1475-7516/2017/01/051