ALMaQUEST -- IV. The ALMA-MaNGA QUEnching and STar formation (ALMaQUEST) SurveyLin, Lihwai2020, ApJ, 903, 1452020DOI 10.3847/1538-4357/abba3a
ALMaQUEST -- VII: Star Formation Scaling Relations of Green Valley GalaxiesLin, LihwaiarXiv2022DOI 10.3847/1538-4357/ac4ccc
Jurakalke im Almaqah-Tempel von Sirwah, Nordjemen – Verwendung, Verwitterung und Herkunft [Jurassic limestones used in the Almaqah Temple of Sirwah, Northern Jemen – use, weathering, and source]Weiss, ChristianE. Schweizerbart Science Publishers2007DOI 10.1127/1860-1804/2007/0158-0571
The ALMaQUEST Survey – II. What drives central starbursts at z ∼ 0?Sara L EllisonJohn Wiley and Sons2020DOI 10.1093/mnras/staa001
The ALMaQUEST Survey X: What Powers Merger Induced Star Formation?Thorp, Mallory D.arXiv2022DOI 10.1093/mnras/stac2288
The ALMaQUEST Survey IX: The Nature of the Resolved Star Forming Main SequenceBaker, William M.arXiv2022DOI 10.1093/mnras/stab3672
The ALMaQUEST Survey XIV: Do Radial Molecular Gas Flows Affect the Star-forming Ability of Barred Galaxies?Hogarth, Lucy M.arXiv2023DOI 10.1093/mnras/stae377
The ALMaQUEST Survey – VI. The Molecular Gas Main Sequence of ‘retired’ Regions in GalaxiesEllison, Sara LOxford University Press (OUP)2020DOI 10.1093/mnrasl/slaa199
The ALMaQUEST Survey XII: Dense Molecular Gas as traced by HCN and HCO$^{+}$ in Green Valley GalaxiesLin, LihwaiarXiv2024
The ALMaQUEST Survey. VIII. What Causes the Velocity Discrepancy Between CO and H$\alpha$ Rotation Curves in Galaxies?Su, Yung-ChauarXiv2022DOI 10.3847/1538-4357/ac77fd
The ALMaQUEST Survey: The Molecular Gas Main Sequence and the Origin of the Star-forming Main SequenceLin, LihwaiAmerican Astronomical Society2019DOI 10.3847/2041-8213/ab4815
Radiocarbon Datings From The Almaqah Temple Of Bar'an, Ma'rib, Republic Of Yemen: Approximately 800 Cal Bc To 600 Cal AdJochen Görsdorf, Burkhardt VogtCambridge University Press2001DOI 10.0000/arizona.edu/radiocarbon3879/3304