J-PLUS: Tomographic analysis of galaxy angular density and redshift fluctuations in Data Release 3. Constraints on photo-$z$ errors, linear bias, and peculiar velocities
C. Hern\'andez-Monteagudo (IAC/ULL), A. Balaguera-Antol\'inez, R. von Marttens, A. del Pino, A. Hern\'an-Caballero, L. R. Abramo, J. Chaves-Montero, C. L\'opez-Sanjuan, V. Marra, E. Tempel, G. Aric\`o, J. Cenarro, D. Crist\'obal-Hornillos, A. Mar\'in-Franch, M. Moles, J. Varela

TL;DR
This study uses J-PLUS DR3 data to analyze galaxy density and redshift fluctuations, constraining galaxy bias, photo-$z$ errors, and peculiar velocities through tomographic angular power spectra.
Contribution
It provides the first consistent measurements of galaxy bias and photo-$z$ errors using tomographic angular fluctuations in J-PLUS DR3 data.
Findings
Counts fluctuations are sensitive to galaxy bias but weakly to peculiar velocities.
Redshift fluctuations are more sensitive to peculiar velocities and photo-$z$ errors.
Measured galaxy bias increases with redshift from 0.9 to 1.5.
Abstract
The {\it Javalambre Photometric Local Universe Survey} (J-PLUS) is a {\it spectro-photometric} survey covering about 3,000~deg in its third data release (DR3), and containing about 300,000 galaxies with high quality ({\it odds}) photometric redshifts (hereafter photo-s). We use this galaxy sample to conduct a tomographic study of the counts and redshift angular fluctuations under Gaussian shells sampling the redshift range . We confront the angular power spectra of these observables measured under shells centered on 11 different redshifts with theoretical expectations derived from a linear Boltzmann code ({\tt ARFCAMB}). Overall we find that J-PLUS DR3 data are well reproduced by our linear, simplistic model. We obtain that counts (or density) angular fluctuations (hereafter ADF) are very sensitive to the linear galaxy bias , although weakly…
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