Luminosity function of quasars at $1.0<z<3.5$ from SDSS and DESI
Abstract
We present a study of the evolution of type 1 quasars at , covering the peak epoch of quasar activity. The quasar evolution has been extensively explored by a variety of previous works and the derived quasar luminosity functions (QLFs) are not well consistent with each other, presumably due to the complexities introduced by different quasar selection techniques and associated completeness corrections. We use a new strategy to construct QLFs based on a library of all known quasars. We focus on a wide region of 1700 deg and a deep field of 265 deg that have rich spectroscopic data primarily from SDSS and DESI. We then apply traditional color cuts in the rest-frame UV/optical to select quasar candidates and use the quasar library to identify them. Our final sample consists of 62,426 quasars at , with a high completeness (96%) and a high purity (93%) in the color selection. Simple color cuts can potentially minimize selection biases for the study of quasar evolution. We derive binned QLFs and characterize them using a double power-law model. Sample incompleteness and contamination are considered as part of the uncertainties in the calculation. Compared to previous results, our QLFs are slightly higher at the faint end, and also higher at the bright end at . The QLFs suggest that the quasar evolution at can be well described by the pure luminosity evolution model, while at , it can be described by either the pure luminosity evolution or the pure density evolution model.
Cite
@article{arxiv.2608.06000,
title = {Luminosity function of quasars at $1.0<z<3.5$ from SDSS and DESI},
author = {Gaocheng Yin and Linhua Jiang and Zhiwei Pan and Paul Martini and Wei-Jian Guo and Siwei Zou and Shengxiu Sun and Swayamtrupta Panda and Abhijeet Anand and Benjamin Alan Weaver and Aaron Meisner and Andrei Cuceu and Arjun Dey and Axel de la Macorra and Christophe Magneville and David Brooks and David Kirkby and David Schlegel and David Sprayberry and Davide Bianchi and Dick Joyce and Enrique Gaztañaga and Eusebio Sanchez and Francisco Javier Castander and Francisco Prada and Gaston Gutierrez and Graziano Rossi and Gregory Tarlé and Hiram K. Herrera-Alcantar and Hu Zou and Ignasi Pérez-Ràfols and Jaime E. Forero-Romero and Jessica Nicole Aguilar and John Moustakas and Joseph Harry Silber and Klaus Honscheid and Laurent Le Guillou and Marc Manera and Martin Landriau and Michael Schubnell and Mustapha Ishak and Nathalie Palanque-Delabrouille and Peter Doel and Ramon Miquel and Robert Kehoe and Satya Gontcho A Gontcho and Seshadri Nadathur and Simone Ferraro and Stephanie Juneau and Steven Ahlen and Theodore Kisner and Todd Claybaugh and Will Percival and Anthony Kremin and Claire Lamman and Claire Poppett and Rongpu Zhou},
journal= {arXiv preprint arXiv:2608.06000},
year = {2026}
}
Comments
16 pages, 6 figures. Accepted for publication in The Astrophysical Journal