The bright end of the galaxy luminosity function at $z \simeq 7$ from the VISTA VIDEO survey

(2023)

Authors:

RG Varadaraj, RAA Bowler, MJ Jarvis, NJ Adams, B Häußler

WEAVE-StePS - a Stellar Population Survey using WEAVE at WHT

Astronomy and Astrophysics EDP Sciences 672 (2023) A87

Authors:

Angela Iovino, Bianca Poggianti, A Mercurio, M Longhetti, Gavin Dalton, Shoko Jin, Scott Trager

Abstract:

Context. The upcoming new generation of optical spectrographs on four-meter-class telescopes will provide valuable opportunities for forthcoming galaxy surveys through their huge multiplexing capabilities, excellent spectral resolution, and unprecedented wavelength coverage.
Aims. WEAVE is a new wide-field spectroscopic facility mounted on the 4.2 m William Herschel Telescope in La Palma. WEAVE-StePS is one of the five extragalactic surveys that will use WEAVE during its first five years of operations. It will observe galaxies using WEAVE MOS (∼950 fibres distributed across a field of view of ∼3 square degrees on the sky) in low-resolution mode (R ∼ 5000, spanning the wavelength range 3660 − 9590 Å).
Methods. WEAVE-StePS will obtain high-quality spectra (S/N ∼ 10 Å−1 at R ∼ 5000) for a magnitude-limited (IAB = 20.5) sample of ∼25 000 galaxies, the majority selected at z ≥ 0.3. The survey goal is to provide precise spectral measurements in the crucial interval that bridges the gap between LEGA-C and SDSS data. The wide area coverage of ∼25 square degrees will enable us to observe galaxies in a variety of environments. The ancillary data available in each of the observed fields (including X-ray coverage, multi-narrow-band photometry and spectroscopic redshift information) will provide an environmental characterisation for each observed galaxy.
Results. This paper presents the science case of WEAVE-StePS, the fields to be observed, the parent catalogues used to define the target sample, and the observing strategy that was chosen after a forecast of the expected performance of the instrument for our typical targets.
Conclusions. WEAVE-StePS will go back further in cosmic time than SDSS, extending its reach to encompass more than ∼6 Gyr. This is nearly half of the age of the Universe. The spectral and redshift range covered by WEAVE-StePS will open a new observational window by continuously tracing the evolutionary path of galaxies in the largely unexplored intermediate-redshift range.

A Diverse Population of z ~ 2 ULIRGs Revealed by JWST Imaging

(2023)

Authors:

J-S Huang, Zi-Jian Li, Cheng Cheng, Meicun Hou, Haojing Yan, SP Willner, Y-S Dai, XZ Zheng, J Pan, D Rigopoulou, T Wang, Zhiyuan Li, Piaoran Liang, A Esamdin, GG Fazio

The Science Performance of JWST as Characterized in Commissioning

Publications of the Astronomical Society of the Pacific IOP Publishing 135:1046 (2023) 048001-048001

Authors:

Jane Rigby, Marshall Perrin, Michael McElwain, Randy Kimble, Scott Friedman, Matt Lallo, René Doyon, Lee Feinberg, Pierre Ferruit, Alistair Glasse, Marcia Rieke, George Rieke, Gillian Wright, Chris Willott, Knicole Colon, Stefanie Milam, Susan Neff, Christopher Stark, Jeff Valenti, Jim Abell, Faith Abney, Yasin Abul-Huda, D Scott Acton, Evan Adams, David Adler

Abstract:

We summarize JWST's measured telescope performance across science Cycle 1. The stability of segments alignments is typically better than 10 nanometers RMS between measurements every two days, leading to highly stable point spread functions. The frequency of segment "tilt events" decreased significantly, and larger tilt events ceased entirely, as structures gradually equilibrated after cooldown. Mirror corrections every 1-2 months now maintain the telescope below 70 nm RMS wavefront error. Observed micrometeoroid impacts during cycle 1 had negligible effect on science performance, consistent with preflight predictions. As JWST begins Cycle 2, its optical performance and stability are equal to, and in some ways better than, the performance reported at the end of commissioning.Comment: STScI Technical Memo. 2.5 pages text, 1 figur

Erratum: Molecular Gas Properties on Cloud Scales across the Local Star-forming Galaxy Population (ApJL (2020)901 (L8) DOI: 10.3847/2041-8213/abb3be)

Astrophysical Journal Letters 946:2 (2023)

Authors:

J Sun, AK Leroy, E Schinnerer, A Hughes, E Rosolowsky, M Querejeta, A Schruba, D Liu, T Saito, CN Herrera, C Faesi, A Usero, J Pety, JMD Kruijssen, EC Ostriker, F Bigiel, GA Blanc, AD Bolatto, M Boquien, M Chevance, DA Dale, S Deger, E Emsellem, SCO Glover, K Grasha, B Groves, J Henshaw, MJ Jimenez-Donaire, JJ Kim, RS Klessen, K Kreckel, JC Lee, S Meidt, K Sandstrom, AE Sardone, D Utomo, TG Williams

Abstract:

In the published article, the prefactor in Equation (3) was incorrectly written as 3.3 × 104 as opposed to 3.3 × 105. The correct equation should be. This was a typo and did not propagate into or affect any quantitative results of the paper.