Impact of scene-specific enhancement spectra on matched filter greenhouse gas retrievals from imaging spectroscopy

Author:

Foote Markus D.,Dennison Philip E.,Sullivan Patrick R.,O'Neill Kelly B.,Thorpe Andrew K.,Thompson David R.,Cusworth Daniel H.,Duren Riley,Joshi Sarang C.

Funder

California Air Resources Board

California Energy Commission

National Aeronautics and Space Administration

Earth Sciences Division

Publisher

Elsevier BV

Subject

Computers in Earth Sciences,Geology,Soil Science

Reference40 articles.

1. Evaluating the effects of surface properties on methane retrievals using a synthetic airborne visible/infrared imaging spectrometer next generation (AVIRIS-NG) image;Ayasse;Remote Sens. Environ.,2018

2. Methane mapping with future satellite imaging spectrometers;Ayasse;Remote Sens.,2019

3. MODTRAN® 6: a major upgrade of the MODTRAN® radiative transfer code, in: 2014 6th workshop on Hyperspectral image and signal processing: evolution in remote sensing (WHISPERS);Berk;IEEE.,2014

4. Optical design of the earth surface mineral dust source investigation (EMIT) imaging spectrometer;Bradley,2020

5. Potential of next-generation imaging spectrometers to detect and quantify methane point sources from space;Cusworth;Atmosph. Measurement Techniq.,2019

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