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  • EARTH RESOURCES AND REMOTE SENSING  (6)
  • New Acceleration Techniques  (5)
  • Earth Resources and Remote Sensing; Meteorology and Climatology  (3)
  • 1
    Publication Date: 2018-12-18
    Description: Author(s): S. S. Baturin, G. Andonian, and J. B. Rosenzweig The suppression of transverse wakefield effects using transversely elliptical drive beams in a planar structure is studied with a simple analytical model that unveils the geometric nature of this phenomenon. By analyzing the suggested model we derive scaling laws for the amplitude of the longitudina... [Phys. Rev. Accel. Beams 21, 121302] Published Mon Dec 17, 2018
    Keywords: New Acceleration Techniques
    Electronic ISSN: 1098-4402
    Topics: Physics
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  • 2
    Publication Date: 2016-02-13
    Description: Author(s): G. G. Manahan, A. Deng, O. Karger, Y. Xi, A. Knetsch, M. Litos, G. Wittig, T. Heinemann, J. Smith, Z. M. Sheng, D. A. Jaroszynski, G. Andonian, D. L. Bruhwiler, J. B. Rosenzweig, and B. Hidding Dark current can spoil witness bunch beam quality and acceleration efficiency in particle beam-driven plasma wakefield accelerators. In advanced schemes, hot spots generated by the drive beam or the wakefield can release electrons from higher ionization threshold levels in the plasma media. These el… [Phys. Rev. Accel. Beams 19, 011303] Published Fri Jan 29, 2016
    Keywords: New Acceleration Techniques
    Electronic ISSN: 1098-4402
    Topics: Physics
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  • 3
    Publication Date: 2018-06-30
    Description: Author(s): A. D. Cahill, J. B. Rosenzweig, V. A. Dolgashev, Z. Li, S. G. Tantawi, and S. Weathersby The development of high brightness electron sources can enable an increase in performance and reduction in size of extreme X-ray sources such as free electron lasers (FELs). A promising path to high brightness is through larger electric fields in radio-frequency (rf) photoinjectors. Recent experimen... [Phys. Rev. Accel. Beams 21, 061301] Published Fri Jun 29, 2018
    Keywords: New Acceleration Techniques
    Electronic ISSN: 1098-4402
    Topics: Physics
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  • 4
    Publication Date: 2013-03-26
    Description: Author(s): Y. Xi, B. Hidding, D. Bruhwiler, G. Pretzler, and J. B. Rosenzweig The dynamics of laser ionization-based electron injection in the recently introduced plasma photocathode concept is analyzed analytically and with particle-in-cell simulations. The influence of the initial few-cycle laser pulse that liberates electrons through background gas ionization in a plasma w... [Phys. Rev. ST Accel. Beams 16, 031303] Published Mon Mar 25, 2013
    Keywords: New Acceleration Techniques
    Electronic ISSN: 1098-4402
    Topics: Physics
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  • 5
    Publication Date: 2015-09-01
    Description: Author(s): G. Wittig, O. Karger, A. Knetsch, Y. Xi, A. Deng, J. B. Rosenzweig, D. L. Bruhwiler, J. Smith, G. G. Manahan, Z.-M. Sheng, D. A. Jaroszynski, and B. Hidding A novel and flexible method of witness-electron-bunch generation in a plasma-wake-field accelerator using an optical plasma torch is shown to be more flexible and faster than conventional approaches. [Phys. Rev. ST Accel. Beams 18, 081304] Published Mon Aug 31, 2015
    Keywords: New Acceleration Techniques
    Electronic ISSN: 1098-4402
    Topics: Physics
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  • 6
    Publication Date: 2011-08-19
    Description: Agricultural productivity is expected to be sensitive to global climate change. Models from atmospheric science, plant science, and agricultural economics are linked to explore this sensitivity. Although the results depend on the severity of climate change and the compensating effects of carbon dioxide on crop yields, the simulation suggests that irrigated acreage will expand and regional patterns of U.S. agriculture will shift. The impact of the U.S. economy strongly depends on which climate model is used.
    Keywords: EARTH RESOURCES AND REMOTE SENSING
    Type: Nature (ISSN 0028-0836); 345; 219-224
    Format: text
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  • 7
    Publication Date: 2011-08-19
    Description: One input to the ground hydrology component of general circulation models is the fraction of gridbox covered (i.e., shaded) by vegetation. The FV is needed in order to specify the partitioning of evaporation between vegetated and nonvegetated surfaces. Satellite data could provide global and seasonally varying specification of FV. In this work, FV is derived from Landsat data for a site in western Kenya; the accuracy of the estimate is evaluated and then compared to the accuracy requirements of a ground hydrology model. Results show that the accuracy of Landsat estimation of FV is + or - 5 percent and that transpiration, evaporation from bare soil and the seasonality of evapotranspiration are strongly dependent on FV.
    Keywords: EARTH RESOURCES AND REMOTE SENSING
    Type: Advances in Space Research (ISSN 0273-1177); 7; 11, 1
    Format: text
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  • 8
    Publication Date: 2019-06-28
    Description: A standardized global data set of soil horizon thicknesses and textures (particle size distributions) was compiled. This data set will be used by the improved ground hydrology parameterization designed for the Goddard Institute for Space Studies General Circulation Model (GISS GCM) Model 3. The data set specifies the top and bottom depths and the percent abundance of sand, silt, and clay of individual soil horizons in each of the 106 soil types cataloged for nine continental divisions. When combined with the World Soil Data File, the result is a global data set of variations in physical properties throughout the soil profile. These properties are important in the determination of water storage in individual soil horizons and exchange of water with the lower atmosphere. The incorporation of this data set into the GISS GCM should improve model performance by including more realistic variability in land-surface properties.
    Keywords: EARTH RESOURCES AND REMOTE SENSING
    Type: NASA-TM-4286 , REPT-91B00202 , NAS 1.15:4286
    Format: application/pdf
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  • 9
    Publication Date: 2019-05-29
    Description: Agricultural systems are currently undergoing rapid shifts owing to socioeconomic development, technological change, population growth, economic opportunity, evolving demand for commodities, and the need for sustainability amid global environmental change. It is not sufficient to maintain current harvest levels; rather, there is a need to rapidly increase production in light of a population growing to nearly 10 billion by mid-century and to more than 11 billion by 2100 (FAO, 2016; UN, 2016; Popkin et al., 2012). Current and future agricultural systems are additionally burdened by human-caused climate change, the result of accumulating greenhouse gas and aerosol emissions, ecological destruction, and land use changes that have altered the chemical composition of Earths atmosphere and trapped energy in the Earth system (IPCC, 2013; Porter et al., 2014). This increased energy has already raised average surface temperatures by approximately 1 degree Centigrade (GISTEMP Team, 2017; Hansen et al., 2010), leading early on to the term global warming, but this phenomenon is now more accurately referred to as climate change because it also modifies atmospheric circulation, adjusts regional and seasonal precipitation patterns, and shifts the distribution and characteristics of extreme events (Bindoff et al., 2013; Collins et al., 2013). Food and health systems face increasing risk owing to progressive climate change now manifesting itself as more frequent, severe extreme weather eventsheat waves, droughts, and floods (IPCC, 2013). Often without warning, weather-related shocks can have catastrophic and reverberating impacts on the increasingly exposed global food systemthrough production, processing, distribution, retail, disposal, and waste. Simultaneously, malnutrition and ill health are arising from lack of access to nutritious food, exacerbated in crises such as food price spikes or shortages. For some countries, particularly import-dependent low-income countries, weather shocks and price spikes can lead to social unrest, famine, and migration.
    Keywords: Earth Resources and Remote Sensing; Meteorology and Climatology
    Type: GSFC-E-DAA-TN57244
    Format: application/pdf
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  • 10
    Publication Date: 2019-06-27
    Description: Long-term snowcovered area data from aircraft and satellite observations have proven useful in reducing seasonal runoff forecast error on the Kern river watershed. Similar use of snowcovered area on the Kings river watershed produced results that were about equivalent to methods based solely on conventional data. Snowcovered area will be most effective in reducing forecast procedural error on watersheds with: (1) a substantial amount of area within a limited elevation range; (2) an erratic precipitation and/or snowpack accumulation pattern not strongly related to elevation; and (3) poor coverage by precipitation stations or snow courses restricting adequate indexing of water supply conditions. When satellite data acquisition and delivery problems are resolved, the derived snowcover information should provide a means for enhancing operational streamflow forecasts for areas that depend primarily on snowmelt for their water supply.
    Keywords: EARTH RESOURCES AND REMOTE SENSING
    Type: NASA-TM-78083 , X-913-77-48
    Format: application/pdf
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