English

Evidence for galaxy dynamics tracing background cosmology below the de Sitter scale of acceleration

Astrophysics of Galaxies 2017-10-18 v1

Abstract

Galaxy dynamics probes weak gravity at accelerations below the de Sitter scale of acceleration adS=cHa_{dS}=cH, where cc is the velocity of light and HH is the Hubble parameter. Low and high redshift galaxies hereby offer a novel probe of weak gravity in an evolving cosmology, satisfying H(z)=H01+ωm(6z+12z2+12z3+6z4+(6/5)z5)/(1+z)H(z)=H_0\sqrt{1+\omega_m(6z+12z^2+12z^3+6z^4+(6/5)z^5)}/(1+z) with baryonic matter content ωm\omega_m sans tension to H0H_0 in surveys of the Local Universe. Galaxy rotation curves show anomalous galaxy dynamics in weak gravity aN<adSa_N<a_{dS} across a transition radius rt=4.7\mboxkpcM111/2(H0/H)12r_t = 4.7\,\mbox{kpc}\,M_{11}^{1/2}(H_0/H)^\frac{1}{2} in galaxies of mass M=1011MM11M=10^{11}M_\odot M_{11}, where aNa_N is the Newtonian acceleration based on baryonic matter content. We identify this behavior with a holographic origin of inertia from entanglement entropy, that introduces a C0C^0 onset across aN=adSa_N=a_{dS} with asymptotic behavior described by a Milgrom parameter satisfying a0=ω0/2πa_0=\omega_0/2\pi, where ω0=1qH\omega_0=\sqrt{1-q}H is a fundamental eigenfrequency of the cosmological horizon. Extending an earlier confrontation with data covering 0.003aN/adS10.003\lesssim a_N/a_{dS}\lesssim1 at redshift z0z\sim0 in Lellie et al. (2016), the modest anomalous behavior in the Genzel et al. sample at redshifts 0.854z2.2820.854\le z\le 2.282 is found to be mostly due to clustering 0.36aN/adS10.36\lesssim a_N/a_{dS}\lesssim1 close to the C0C^0 onset to weak gravity and an increase of up to 65\% in a0a_0.

Keywords

Cite

@article{arxiv.1709.05944,
  title  = {Evidence for galaxy dynamics tracing background cosmology below the de Sitter scale of acceleration},
  author = {Maurice H. P. M. van Putten},
  journal= {arXiv preprint arXiv:1709.05944},
  year   = {2017}
}

Comments

to appear in ApJ