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result(s) for
"Lynch, David K."
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The Lavic Lake Fault: A Long-Term Cumulative Slip Analysis via Combined Field Work and Thermal Infrared Hyperspectral Airborne Remote Sensing
2020
The 1999 Hector Mine earthquake ruptured to the surface in eastern California, with >5 m peak right-lateral slip on the Lavic Lake fault. The cumulative offset and geologic slip rate of this fault are not well defined, which inhibits tectonic reconstructions and risk assessment of the Eastern California Shear Zone (ECSZ). With thermal infrared hyperspectral airborne imagery, field data, and auxiliary information from legacy geologic maps, we created lithologic maps of the area using supervised and unsupervised classifications of the remote sensing imagery. We optimized a data processing sequence for supervised classifications, resulting in lithologic maps over a test area with an overall accuracy of 71 ± 1% with respect to ground-truth geologic mapping. Using all of the data and maps, we identified offset bedrock features that yield piercing points along the main Lavic Lake fault and indicate a 1036 +27/−26 m net slip, with 1008 +14/−17 m horizontal and 241 +51/−47 m vertical components. For the contribution from distributed shear, modern off-fault deformation values from another study imply a larger horizontal slip component of 1276 +18/−22 m. Within the constraints, we estimate a geologic slip rate of <4 mm/yr, which does not increase the sum geologic Mojave ECSZ rate to current geodetic values. Our result supports previous suggestions that transient tectonic activity in this area may be responsible for the discrepancy between long-term geologic and present-day geodetic rates.
Journal Article
Remotely sensed ammonia emission from fumarolic vents associated with a hydrothermally active fault in the Salton Sea Geothermal Field, California
by
Lynch, David K.
,
Buckland, Kerry N.
,
Westberg, Karl R.
in
Air pollution
,
Ammonia
,
Atmospheric sciences
2011
Airborne hyperspectral imaging surveys were conducted over a geothermally active region straddling the southeastern shore of the Salton Sea in Southern California. The imagery was acquired across the 7.6–13.5 μm longwave‐infrared region with a ground sample distance of approximately 1 m. Prominent thermal hot spots associated with fumaroles along a known fault line were observed to coincide with emission of free ammonia, presumed to originate from geothermally induced pyrolytic decomposition of nitrogenous compounds that permeate the lake water, sediment, and adjacent agricultural terrain. It is shown that the inferred fluxes of ammonia constitute a significant fraction (0.8–2.5%) of the total atmospheric ammonia burden assessed for the Salton Sea environs and represent a previously unreported source for that locale. Key Points Ammonia emitted from hydrothermal vents adjacent to the shore of a polluted lake Emissions quantification with thermal‐IR imagery Ammonia source not previously known or described
Journal Article
Cirrus
2002
Cirrus clouds are high, thin, tropospheric clouds composed predominately of ice.In the last ten years, considerable work has shown that cirrus is widespread--more common than previously believed--and has a significant impact on climate and global change.
Properties of the circumstellar dust in galactic FS CMa objects
by
Bjorkman, Karen S.
,
Gray, Richard O.
,
Lynch, David K.
in
Accretion disks
,
Contributed Papers
,
Dust
2010
FS CMa objects are a group of hot stars that exhibit the B[e] phenomenon. The group was defined a few years ago on the basis of the formerly known unclassified B[e] stars and newly discovered objects. One of their main features is the presence of hot circumstellar dust whose properties were unknown. We present IR spectra of nearly 20 FS CMa objects obtained with the Spitzer Space Telescope. Dusty features, such as broad silicate bands in emission and narrow bands that are usually explained by PAHs, are detected. The IR fluxes are compared to those detected by IRAS and MSX. Main results of the data analysis are briefly discussed.
Journal Article
0.8–2.5 Micron Reflectance Spectroscopy of Pluto
by
Rudy, Richard J.
,
Venturini, Catherine C.
,
Puetter, R. C.
in
Absorption spectra
,
Albedo
,
Hubble Space Telescope
2003
Near‐infrared (0.8–2.5 μm) spectrophotometry, acquired on 2002 July 18.25, is presented for the Pluto‐Charon system. The sub‐Earth longitude and latitude of Pluto at the time of the observations were 80° and 28
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5, with a phase angle of 1
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25. The data span wavelength segments that are typically covered by different instruments and includes the seldom‐observed 1–1.3 μm region. The geometric albedo is compared to previous observations that were close to this longitude, and no significant differences are seen. Wavelength shifts, relative to laboratory values for pure methane ice and methane immersed in N2ice, are reported for a number of methane features in Pluto’s spectrum.
Journal Article
Infrared Spectroscopy of V4334 Sgr (Sakurai's Object)
2002
IR spectroscopy and photometry in the 0.8-2.4 and 3-14 kmregions are reported for seven dates between March 21 1998 and July20 2000 UT. The shorter wavelength region displays a smooth continuum increasing to longerwavelengths that is indicative of the Wien tail of a Planck function. Only theHe I 1.0830 line is present early and it shows a P-Cygni profile which laterdisappears. The long wave spectra show a smooth continuum between 3 and 13km that was well fit by a gray body at 1000 K. A weak, unidentifiedemission feature appears between 8 and 10 km.
Journal Article
Mid-Infrared Spectroscopy of Persistent Leonid Trains
by
Chatelain, Mark A
,
Abendroth, Eric
,
Russell, Ray W
in
Carbon dioxide
,
Continuum radiation
,
Dust emission
1998
The first infrared spectroscopy in the 3–13 micron region has been obtained of several persistent Leonid meteor trains with two different instrument types, one at a desert ground-based site and the other on-board a high-flying aircraft. The spectra exhibit common structures assigned to enhanced emissions of warm CH4, CO2, CO and H2O, which may originate from heated trace air compounds or materials created in the wake of the meteor. This is the first time that any of these molecules has been observed in the spectra of persistent trains. Hence, the mid-IR observations offer a new perspective on the physical processes that occur in the path of the meteor at some time after the meteor itself has passed by. Continuum emission is observed also, but its origin has not yet been established. No 10 micron dust emission feature has been observed.
Journal Article
Observations of Leonid Meteors Using a Mid-Wave Infrared Imaging Spectrograph
by
Warren, David
,
Lynch, David K
,
Jenniskens, Peter
in
Body temperature
,
Broadband
,
Infrared emissions
1998
We report broadband 3–5.5 µm detections of two Leonid meteors observed during the 1998 Leonid Multi-Instrument Aircraft Campaign. Each meteor was detected at only one position along their trajectory just prior to the point of maximum light emission. We describe the particular aspects of the Aerospace Corp. Mid-wave Infra-Red Imaging Spectrograph (MIRIS) developed for the observation of short duration transient events that impact its ability to detect Leonid meteors. This instrument had its first deployment during the 1998 Leonid MAC. We infer from our observations that the mid-wave IR light curves of two Leonid meteors differed from the visible light curve. At the points of detection, the infrared emission in the MIRIS passband was 25 ± 4 times that at optical wavelengths for both meteors. In addition, we find an upper limit of 800 K for the solid body temperature of the brighter meteor we observed, at the point in the trajectory where we made our mid-wave IR detection.
Journal Article