English

Nonlinear Effects due to the Coupling of Long-Wave Modes

Astrophysics 2007-05-23 v1

Abstract

The cosmological fluid equations are used to study the nonlinear mode coupling of density fluctuations. We find that for realistic cosmological spectra there is a significant contribution to the nonlinear evolution on scales of interest to large-scale structure from the long-wave part of the initial spectrum. A consequence of this mode coupling is that at high redshift, zz, the nonlinear scale [defined by σ(z)=1\sigma(z)=1] can be significantly larger than a linear extrapolation would indicate. For the standard CDM spectrum with a σ8=1\sigma_8=1 normalization the mass corresponding to the nonlinear scale at z=20,10,5z=20, 10, 5 is about 100,10,3100, 10, 3 times (respectively) larger than the linearly extrapolated value. We also investigate the possibility of divergent contributions to the density field from long-wave modes if the spectral index of the power spectrum  n<1\ n<-1. Using an approximate non-perturbative approach we find that for n>3n>-3\, the divergent contribution appears only in the phase. This can be related to the large-scale bulk velocity, and clarifies previous results from N-body simulations.

Keywords

Cite

@article{arxiv.astro-ph/9309040,
  title  = {Nonlinear Effects due to the Coupling of Long-Wave Modes},
  author = {Bhuvnesh Jain and Edmund Bertschinger},
  journal= {arXiv preprint arXiv:astro-ph/9309040},
  year   = {2007}
}

Comments

2 pages, Latex file, Proceedings of IAP Colloq 9, "Cosmological Velocity Fields" ed. F Bouchet & M. Lachieze-Rey, CSR-AT-93-22