A search for nontoroidal topological lensing in the Sloan Digital Sky Survey quasar catalog
arXiv:1306.2737 · doi:10.1088/0004-637X/773/2/152
Abstract
Flat space models with multiply connected topology, which have compact dimensions, are tested against the distribution of high-redshift () quasars of the Sloan Digital Sky Survey (SDSS). When the compact dimensions are smaller in size than the observed universe, topological lensing occurs, in which multiple images of single objects (ghost images) are observed. We improve on the recently introduced method to identify ghost images by means of four-point statistics. Our method is valid for any of the 17 multiply connected flat models, including nontoroial ones that are compactified by screw motions or glide reflection. Applying the method to the data revealed one possible case of topological lensing caused by sixth-turn screw motion, however, it is consistent with the simply connected model by this test alone. Moreover, simulations suggest that we cannot exclude the other space models despite the absence of their signatures. This uncertainty mainly originates from the patchy coverage of SDSS in the South Galactic cap, and the situation will be improved by future wide-field spectroscopic surveys.
accepted for publication in ApJ
References in corpus (6)
- A Catalog of Quasar Properties from SDSS DR7
- Clustering of High Redshift () Quasars from the Sloan Digital Sky Survey
- The optimal phase of the generalised Poincare dodecahedral space hypothesis implied by the spatial cross-correlation function of the WMAP sky maps
- The Sloan Digital Sky Survey Quasar Lens Search. VI. Constraints on Dark Energy and the Evolution of Massive Galaxies
- An improved cosmic crystallography method to detect holonomies in flat spaces
- A spatial correlation analysis for a toroidal universe