U.S. Geological Survey home page

USGS Spectral Library Version 7 Sample Description

Kokaly, R.F., Clark, R.N., Swayze, G.A., Livo, K.E., Hoefen, T.M., Pearson, N.C., Wise, R.A., Benzel, W.M., Lowers, H.A., Driscoll, R.L., and Klein, A.J., 2017, USGS Spectral Library Version 7: U.S. Geological Survey Data Series 1035, 61 p., https://doi.org/10.3133/ds1035
For more information on the library, see: local link web link

TITLE: Conifer-Meadow-Mix YNP-CM-1 DESCRIPT

DOCUMENTATION_FORMAT: PLANT

SAMPLE_ID: YNP-CM-1

PLANT_TYPE: Tree and meadow mixture

PLANT: Conifer and grassland mixture.

LATIN_NAME: Not determined

COLLECTION_LOCALITY: Moss Creek on the eastern rim of the Grand Canyon of the Yellowstone, Yellowstone National Park, Wyoming, USA.

ORIGINAL_DONOR: Raymond Kokaly

SAMPLE_DESCRIPTION:

Averaged spectral reflectance for an open forest of conifers, with unshadowed grassland vegetation between trees, located along Moss Creek, on the eastern rim of the Grand Canyon of the Yellowstone in Yellowstone National Park. This average spectrum was computed from 153 pixels of radiative-transfer-ground-calibrated AVIRIS data.  AVIRIS data were collected on August 6, 1996, at approximately 11:10 am Local Time.  AVIRIS channels 1-4, 32-33, 43, 59-62, 81-84, 95-97, 106-113, 154-167, 173-175, and 222-224 were deleted due to residual atmospheric effects, poor instrument response, and redundancy where detectors overlap.

Spectrum published in:
Kokaly, R.F., Despain, D.G., Clark, R.N., and Livo, K.E., 2003, Mapping vegetation in Yellowstone National Park using spectral feature analysis of AVIRIS data, Remote Sensing of Environment, Volume 84, Issue 3, Pages 437-456. http://dx.doi.org/10.1016/S0034-4257(02)00133-5

END_SAMPLE_DESCRIPTION.

COMPOSITIONAL_ANALYSIS_TYPE: none

COMPOSITION_DISCUSSION:

END_COMPOSITION_DISCUSSION.

TRACE_ELEMENT_ANALYSIS:

TRACE_ELEMENT_DISCUSSION:

END_TRACE_ELEMENT_DISCUSSION.

SPECTROSCOPIC_DISCUSSION:

END_SPECTROSCOPIC_DISCUSSION.

SPECTRAL_PURITY: 1b2_3_4_ # 1= 0.2-3, 2= 1.5-6, 3= 6-25, 4= 20-150 microns