A survey of luminous high-redshift quasars with SDSS and WISE. I. target selection and optical spectroscopy
Feige Wang, Xue-Bing Wu, Xiaohui Fan, Jinyi Yang, Weimin Yi, Fuyan, Bian, Ian D. McGreer, Qian Yang, Yanli Ai, Xiaoyi Dong, Wenwen Zuo, Linhua, Jiang, Richard Green, Shu Wang, Zheng Cai, Ran Wang, Minghao Yue

TL;DR
This paper presents a new combined optical and mid-IR method for efficiently selecting high-redshift quasars, leading to the discovery of 72 new quasars and significantly increasing known samples at z>4.5, aiding studies of early universe evolution.
Contribution
Developed a novel selection technique combining SDSS and WISE data, improving completeness and efficiency in finding luminous high-redshift quasars.
Findings
Discovered 72 new quasars at 4.4<z<5.7, increasing known samples.
Doubled the number of bright quasars with M_{1450}<-27.5 at z>4.5.
Identified four new luminous quasars at z>5.7.
Abstract
High-redshift quasars are important tracers of structure and evolution in the early universe. However, they are very rare and difficult to find when using color selection because of contamination from late-type dwarfs. High-redshift quasar surveys based on only optical colors suffer from incompleteness and low identification efficiency, especially at . We have developed a new method to select quasars with both high efficiency and completeness by combining optical and mid-IR Wide-field Infrared Survey Explorer (WISE) photometric data, and are conducting a luminous quasar survey in the whole Sloan Digital Sky Survey (SDSS) footprint. We have spectroscopically observed 99 out of 110 candidates with -band magnitudes brighter than 19.5 and 64 (64.6\%) of them are quasars with redshifts of and absolute…
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