NEXUS is a JWST Multi-Cycle (Cycles 3-5; 368 primary hrs) GO Treasury imaging and spectroscopic survey around the North Ecliptic Pole. It contains two overlapping tiers. The Wide tier (∼400arcmin2) performs NIRCam/WFSS 2.4-5 micron grism spectroscopy with three epochs over 3 years (final continuum S/N/pixel>3 at F444W<22.2). The Deep tier (∼50arcmin2) performs high-multiplexing NIRSpec 0.6-5.3 micron MOS/PRISM spectroscopy for ∼10,000 targets, over 18 epochs with a 2-month cadence (epoch/final continuum S/N/pixel>3 at F200W≲27/29). All epochs have simultaneous multi-band NIRCam and MIRI imaging (5σ final depths of ∼28−29 in NIRCam and ∼25 in MIRI). The field is within the continuous viewing zone of JWST, and is fully covered by the Euclid Ultra-Deep Field, with 0.9-2 micron deep Euclid spectroscopy and cadenced photometry. NEXUS has three science pillars. First, with its massive and nearly complete (flux-limited) spectroscopic samples and deep photometry, it will perform efficient classification and physical characterization of galaxies and AGNs from z∼1 to Cosmic Dawn. With the large contiguous area coverage, it will measure the spatial clustering and demography of the first galaxies and SMBHs at z>6. Second, multi-epoch observations enable systematic time-domain investigations, focusing on z>3 transients and low-mass AGN reverberation mapping. Third, the comprehensive data set will enable knowledge transfer to other legacy fields, create data challenges, and initiate benchmark work for future space missions. With rapid public releases of processed data and an open invitation for collaboration, NEXUS aims for broad and swift community engagement, to become a powerhouse to drive transformative advancements in multiple key science areas of astronomy.
@article{arxiv.2408.12713,
title = {NEXUS: the North ecliptic pole EXtragalactic Unified Survey},
author = {Yue Shen and Ming-Yang Zhuang and Junyao Li and Adam J. Burgasser and Xiaohui Fan and Jenny E. Greene and Gautham Narayan and Alice E. Shapley and Fengwu Sun and Feige Wang and Qian Yang},
journal= {arXiv preprint arXiv:2408.12713},
year = {2024}
}