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Theoretical physicists working at a blackboard collaboration pod in the Beecroft building.
Credit: Jack Hobhouse

Natalie van IJcken Koscelanska

Graduate Student

Research theme

  • Fields, strings, and quantum dynamics

Sub department

  • Rudolf Peierls Centre for Theoretical Physics

Research groups

  • Particle theory
natalie.koscelanska@physics.ox.ac.uk
Rudolf Peierls Centre for Theoretical Physics, room 40.09
InspireHEP
  • About
  • Publications

Metastable cosmic strings are broken at the start

Journal of High Energy Physics Springer

Authors:

Lorenzo Tranchedone, Ethan Carragher, Edward Hardy, Natálie van IJcken Koscelanská

Abstract:

We show that metastable cosmic strings break at early times, either via finite-temperature effects or by attaching to pre-existing monopoles during network percolation. The resulting segments can be initially super-horizon in size and thus persist for a significant amount of time. If the strings do not re-percolate, the network’s eventual destruction is typically due to this early-time breaking rather than late-time quantum tunnelling. Survival of strings to epochs probed by NANOGrav requires m2 M/µ ≳ 103 , where mM and µ are the monopole mass and the string tension respectively, over an order of magnitude larger than previous estimates. We also revisit quantum-tunnelling induced breaking. Results from numerical simulations suggest that this occurs mainly at rare high-tension points on the strings, yielding a rate much larger than is usually assumed. We briefly discuss the related scenario of flux tubes in a dark QCD-like hidden sector with dark-quark masses above the confinement scale.
Details from ORA

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