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Jason Glenn

Researcher at University of Colorado Boulder

Publications -  339
Citations -  28559

Jason Glenn is an academic researcher from University of Colorado Boulder. The author has contributed to research in topics: Galaxy & Star formation. The author has an hindex of 81, co-authored 333 publications receiving 27203 citations. Previous affiliations of Jason Glenn include University of Arizona & Goddard Space Flight Center.

Papers
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Journal ArticleDOI

HerMES: Far-infrared properties of known AGN in the HerMES fields

Evanthia Hatziminaoglou, +83 more
TL;DR: In this paper, the authors study large samples of spectroscopically confirmed type 1 and type 2 AGN lying within the Herschel Multi-tiered Extragalactic Survey (HerMES) fields observed during the science demonstration phase, aiming to understand their FIR colour distributions and constrain their starburst contributions.
Journal ArticleDOI

NGC 1266: Characterization of the Nuclear Molecular Gas in an Unusual SB0 Galaxy

TL;DR: In this article, spectrally resolved low-J$ CO emission lines were combined with ground-based observations to decompose the nuclear and putative outflow velocity components and to model the molecular gas to quantify its properties.
Journal Article

The Herschel-SPIRE Legacy Survey (HSLS): the scientific goals of a shallow and wide submillimeter imaging survey with SPIRE

Asantha Cooray, +249 more
TL;DR: The Herschel-SPIRE Legacy Survey (HSLS) as mentioned in this paper is a large-scale survey of 2.5 to 3 million galaxies down to 26, 27 and 33 mJy (50% completeness; 5 sigma confusion noise) at 250, 350 and 500 micron, respectively, in the southern hemisphere (3000 sq. degrees), areas which have extensive multi-wavelength coverage and are easily accessible from ALMA.
Proceedings ArticleDOI

Progress towards ultra sensitive KIDs for future far-infrared missions: a focus on recombination times

TL;DR: In this paper, a new model for quantifying time constants from the responses of detectors to pulses of light, and test this model on a 40 nm thick ¼ λ Al coplanar waveguide KID was presented.
Proceedings ArticleDOI

Studies of atmospheric noise on Mauna Kea at 143 GHz with Bolocam

TL;DR: In this paper, measurements of the fluctuations in atmospheric emission (atmospheric noise) above Mauna Kea were recorded with Bolocam at 143 GHz, and the best results were achieved when the fluctuations using a low-order polynomial in detector position over the 8 arcminute focal plane.