Quantitative estimation of helium-3 spatial distribution in the lunar regolith layer

Icarus - Tập 190 - Trang 15-23 - 2007
Wenzhe Fa1, Ya-Qiu Jin1
1Key Laboratory of Wave Scattering and Remote Sensing Information (MoE), Fudan University, Shanghai 200433, China

Tài liệu tham khảo

Arnold, 1975, Monte Carlo simulation of turnover processes in the lunar regolith, Proc. Lunar Sci. Conf., 6, 2375 Fa, W., Jin, Y.Q., 2007. Simulation of brightness temperature from lunar surface and inversion of regolith layer thickness. J. Geophys. Res., in press (2006JE002751) Fegley, 1993, Lunar volatiles: Implications for lunar resource utilization, 367 Futugami, 1990, Helium ion implantation into minerals, Earth Planet. Sci. Lett., 101, 63, 10.1016/0012-821X(90)90124-G Heiken, 1991 Jin, 1984, Wave approach to brightness temperature from a bounded layer of random discrete scatterers, Electromagnetics, 4, 323, 10.1080/02726348408908121 Jin, 1994 Jin, 2005 Jin, 2003, Simulation of brightness temperature from the lunar surface using multi-channels microwave radiometers, Chin. J. Radio Sci., 18, 477 Johnson, 1999, Estimated solar wind-implanted helium-3 distribution on the Moon, Geophys. Res. Lett., 26, 385, 10.1029/1998GL900305 Jordan, J.L., 1989. Prediction of the He distribution at the lunar surface. In: Annual Invitational Symposium on Space Mining and Manufacturing. UA/NASA Space Engineering Research Center, Univ. of Arizona, Tucson, pp. VII-38–VII-50 Jordan, J.L., 1990. Mapping pyroclastic deposits and other lunar features for solar wind implanted helium. In: Delano, S.W., Heiken, G.H. (Eds.), Workshop on Lunar Volcanic Glasses: Scientific and Resource Potential, LPI Tech. Rep. 90-02, pp. 43–45 Kulcinski, G.L., Schmitt, H.H., 1988. The Moon: An abundant source of clean and safe fusion fuel for the 21st century. In: Lunar Helium-3 and Fusion Power, NASA Conference Publication 10018, pp. 35–63 Lewis, 1991, Extraterrestrial sources of 3He for fusion power, Space Power, 10, 363 Lucey, 2000, Imaging of lunar surface maturity, J. Geophys. Res., 105, 20337, 10.1029/1999JE001110 Lucey, 2000, Lunar iron and titanium abundance algorithms based on final processing of Clementine ultraviolet–visible images, J. Geophys. Res., 105, 20297, 10.1029/1999JE001117 McKay, 1991, The lunar regolith, 285 Melosh, 1989 Morris, 1976, Surface exposure indices of lunar soils: A comparative FMR study, Proc. Lunar Sci. Conf., 7, 315 Murali, 1993, Helium-3 inventory of lunar samples: A potential future energy resource for mankind?, Lunar Planet. Sci., XXIV, 1024 Shkuratov, 2001, Regolith layer thickness mapping of the Moon by radar and optical data, Icarus, 149, 329, 10.1006/icar.2000.6545 Shkuratov, 1999, 3He distribution over lunar visible hemisphere, Solar System Res., 33, 409 Swindle, 1990 Swindle, 1992, Systematic variations in solar wind fluence with lunar location: Implication for abundance of solar-wind-implanted volatiles, Proc. Lunar Sci. Conf., XXIII, 1395 Taylor, 1990, Hydrogen, helium, and other solar-wind components in lunar soil: Abundances and predictions, 68 Taylor, 1994, Helium-3 on the Moon: Model assumptions and abundance, 678 Tsang, 1985 Wieler, 1980, Record if the solar corpuscular radiation in minerals from lunar soils: A comparative study of noble gases and tracks, Proc. Lunar Sci. Conf., 11, 1369 Wittenberg, 1986, Lunar source of 3He for fusion power, Fusion Technol., 10, 167, 10.13182/FST86-A24972