
Jeremy Green
· Associate ProfessorUniversity of Colorado Boulder · English
Active 1983–2023
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About
Jeremy Green is an Associate Professor in the Department of English at the University of Colorado Boulder. He specializes in twentieth and twenty-first century literature, innovative fiction, poetics, and literary theory. Green received his Bachelor of Arts degree from Oxford University and his Ph.D. from Cambridge University in 1993. His scholarly work includes a book titled 'Late Postmodernism: American Fiction at the Millennium,' published by Palgrave in 2005, which focuses on the shifting contours of the literary field in the last decade of the 20th century and beyond. The book addresses the anxieties arising from the perceived obsolescence of the novel as a form and print as a medium. Currently, Green is working on two projects: a study of American and British fiction in the age of neoliberalism and a short history of modern poetics. His areas of specialty include American Literature, British Literature, Literary Theory, and Modern and Contemporary Literature.
Research topics
- Physics
- Biology
- Optics
- Genetics
- Astronomy
- Computational biology
- Botany
- Astrobiology
Selected publications
The Astrophysical Journal Supplement Series · 2017-05-01 · 79 citations
articleOpen accessAbstract We present basic data and modeling for a survey of the cool, photoionized circumgalactic medium (CGM) of low-redshift galaxies using far-UV QSO absorption-line probes. This survey consists of “targeted” and “serendipitous” CGM subsamples, originally described in Stocke et al. (Paper I). The targeted subsample probes low-luminosity, late-type galaxies at <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" overflow="scroll"> <mml:mi>z</mml:mi> <mml:mo><</mml:mo> <mml:mn>0.02</mml:…
A Galaxy Redshift Survey Near HST/COS AGN Sight Lines
The Astrophysical Journal Supplement Series · 2018-07-01 · 32 citations
articleOpen accessAbstract To establish the connection between galaxies and UV-detected absorption systems in the local universe, a deep ( g ≤ 20) and wide (∼20′ radius) galaxy redshift survey is presented around 47 sight lines to UV-bright AGNs observed by the Cosmic Origins Spectrograph (COS). Specific COS science team papers have used this survey to connect absorbers to galaxies, groups of galaxies, and large-scale structures, including voids. Here we present the technical details of the survey and the basic m…
Journal of Astronomical Telescopes Instruments and Systems · 2022 · 30 citations
The Extreme-ultraviolet Stellar Characterization for Atmospheric Physics and Evolution (ESCAPE) mission is an astrophysics Small Explorer employing ultraviolet spectroscopy (EUV: 80 to 825 and FUV: 1280 to 1650 ) to explore the high-energy radiation environment in the habitable zones around nearby stars. ESCAPE provides the first comprehensive study of the stellar EUV and coronal mass ejection environments that directly impact the habitability of rocky exoplanets. In a 20-month science mission,…
The ESCAPE mission overview: exploring the stellar drivers of exoplanet habitability
2021-08-02 · 4 citations
articleThe Extreme-ultraviolet Stellar Characterization for Atmospheric Physics and Evolution (ESCAPE) mission is an astrophysics Small Explorer employing ultraviolet spectroscopy (EUV: 80 - 825 Å and FUV: 1280 - 1650 Å) to explore the high-energy radiation environment in the habitable zones around nearby stars. ESCAPE provides the first comprehensive study of the stellar EUV and coronal mass ejection environments which directly impact the habitability of rocky exoplanets. In a 20 month science mission…
INFUSE: assembly and alignment of a rocket-borne FUV integral field spectrograph
2021-08-03 · 4 citations
articleThe INtegral Field Ultraviolet Spectroscopic Experiment (INFUSE), a sounding rocket payload under development at the University of Colorado Laboratory for Atmospheric and Space Physics, will be the first far ultraviolet (1000 - 2000 A° ) integral field spectrograph (IFS) in space. With access to part of the Lyman ultraviolet (1000 - 1216 A° ), INFUSE will study spectral emission lines such as O VI in extended objects at greater spatial resolution and grasp than has previously been possible. An F…
Frequent coauthors
- 40 shared
Erik Wilkinson
- 37 shared
Kevin France
- 30 shared
J. Michael Shull
University of North Carolina at Chapel Hill
- 27 shared
John T. Stocke
Laboratory for Atmospheric and Space Physics
- 24 shared
John Hu
University of Hawaii System
- 23 shared
Michael J. Melzer
- 23 shared
Wayne B. Borth
University of Hawaii System
- 21 shared
Brian Fleming
Laboratory for Atmospheric and Space Physics
Education
B.A.
Oxford University
- 1993
Ph.D.
Cambridge University
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