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The Probing In-Situ With Neutron and Gamma Rays (PING) Instrument for Planetary Composition MeasurementsThe Probing In situ with Neutrons and Gamma rays (PING) instrument (formerly named PNG-GRAND) [I] experiment is an innovative application of the active neutron-gamma ray technology successfully used in oil field well logging and mineral exploration on Earth over many decades. The objective of our active neutron-gamma ray technology program at NASA Goddard Space Flight Center (NASA/GSFC) is to bring PING to the point where it can be flown on a variety of surface lander or rover missions to the Moon, Mars, Venus, asteroids, comets and the satellites of the outer planets and measure their bulk surface and subsurface elemental composition without the need to drill into the surface. Gamma-Ray Spectrometers (GRS) have been incorporated into numerous orbital planetary science missions. While orbital measurements can map a planet, they have low spatial and elemental sensitivity due to the low surface gamma ray emission rates reSUlting from using cosmic rays as an excitation source, PING overcomes this limitation in situ by incorporating a powerful neutron excitation source that permits significantly higher elemental sensitivity elemental composition measurements. PING combines a 14 MeV deuterium-tritium Pulsed Neutron Generator (PNG) with a gamma ray spectrometer and two neutron detectors to produce a landed instrument that can determine the elemental composition of a planet down to 30 - 50 cm below the planet's surface, The penetrating nature of .5 - 10 MeV gamma rays and 14 MeV neutrons allows such sub-surface composition measurements to be made without the need to drill into or otherwise disturb the planetary surface, thus greatly simplifying the lander design, We are cun'ently testing a PING prototype at a unique outdoor neutron instrumentation test facility at NASA/GSFC that provides two large (1.8 m x 1.8 m x ,9 m) granite and basalt test formations placed outdoors in an empty field, Since an independent trace elemental analysis has been performed on both these Columbia River basalt and Concord Gray granite materials, these large samples present two known standards with which to compare PING's experimentally measured elemental composition results, We will present both gamma ray and neutron experimental results from PING measurements of the granite and basalt test formations in various layering configurations and compare the results to the known composition.
Document ID
20120009964
Acquisition Source
Goddard Space Flight Center
Document Type
Presentation
Authors
Parsons, A.
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Bodnarik, J.
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Evans, L.
(Computer Sciences Corp. Calverton, MD, United States)
McClanahan, T.
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Namkung, M.
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Nowicki, S.
(Michigan Univ. Ann Arbor, MI, United States)
Schweitzer, J.
(Connecticut Univ. Hartford, CT, United States)
Starr, R.
(Catholic Univ. of America Washington, DC, United States)
Date Acquired
August 25, 2013
Publication Date
May 14, 2012
Subject Category
Lunar And Planetary Science And Exploration
Report/Patent Number
GSFC.CPR.00314.2012
Report Number: GSFC.CPR.00314.2012
Meeting Information
Meeting: IEEE 2012 Symposium on Radiation Measurements and Applications
Location: Oakland, CA
Country: United States
Start Date: May 14, 2012
End Date: May 18, 2012
Sponsors: Institute of Electrical and Electronics Engineers
Distribution Limits
Public
Copyright
Public Use Permitted.
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