English

Conditions for jet break-out in NS mergers

High Energy Astrophysical Phenomena 2020-01-08 v2

Abstract

We consider conditions for jet break-out through ejecta following mergers of neutron stars and provide simple relations for the break out conditions. We demonstrate that: (i) break-out requires that the isotropic-equivalent jet energy EjE_j exceeds the ejecta energy EejE_{ej} by EjEej/β0E_j \geq E_{ej}/ \beta_0, where β0=Vej/c \beta_0 = V_{ej}/c, VejV_{ej} is the maximum velocity of the ejecta. If the central engine terminates before the break out, the shock approaches the edge of the ejecta slowly 1/t\propto 1/t; late break out occurs only if at the termination moment the head of the jet was relatively close to the edge. (ii) If there is a substantial delay between the ejecta's and the jet's launching, the requirement on the jet power increases. (iii) The forward shock driven by the jet is mildly strong, with Mach number M5/4M\approx 5/4 (increasing with time delay tdt_d); (iii) the delay time tdt_d between the ejecta and the jet's launching is important for td>t0=(3/16)cMejVej/Lj=1.01secMej,2Lj,511(βej/0.3)t_d > t_0= ({3 }/{16} ) {c M_{ej} V_{ej}}/{L_j} = 1.01 {\rm sec} M_{ej, -2} L_{j, 51} ^{-1} \left ( {\beta_{ej}} /{0.3} \right), where MejM_{ej} is ejecta mass, LjL_j is the jet luminosity (isotropic equivalent). For small delays, t0t_0 is also an estimate of the break-out time.

Cite

@article{arxiv.1910.02769,
  title  = {Conditions for jet break-out in NS mergers},
  author = {Maxim Lyutikov},
  journal= {arXiv preprint arXiv:1910.02769},
  year   = {2020}
}