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Distribution and anomaly of microwave emission at Lunar South Pole

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Abstract

Investigation on Lunar polar area is almost every lunar mission’s primary objective in recent years. The rationale behind it is that illumination and ice resources in this area can be potentially very helpful for constructing lunar human base. In this paper, we analyze microwave radiometric characteristics of the Moon by using the newly acquired Chang’E-1 Lunar Microwave Sounder (CELMS) data. Microwave brightness temperature at Lunar South Pole (LSP) is distributed regularly with a style of “ring-in-ring”, decreasing from equator to pole. Regolith temperature gradient is bigger at lunar equator than at polar area. Brightness temperature diurnal difference decreases with observation frequency. Microwave brightness temperature distribution maps at LSP and Lunar North Pole (LNP) have been made based on the analysis. It is found that microwave brightness temperature becomes to synchronize with elevation beyond −85° latitude. This phenomenon is related to lightening condition and indicates temperaturedistribution at LSP. The brightness temperature anomaly cold points are potentially cold trap areas for water or ice while hot points imply plenty of illumination resources there.

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References

  1. Jiang J S, Zhang X H, Zhang D H, et al. Microwave sounding of lunar soil from China lunar orbit satellite “Chang’E-1 (CE-1)”. The 37th COSPAR Scientific Assembly. 2008 July 13–20, Montreal, Canada, 2008. 1379

  2. Nozette S, Lichtenberg C, Spaudis P, et al. The Clementine bistatic radar experiment. Science, 1996, 274: 1495–1498

    Article  Google Scholar 

  3. Feldman W, Barraclough B, Maurice S, et al. Fluxes of fast and epithermal neutrons from lunar prospector: Evidence for water ice at the lunar poles. Science, 281: 1496–1500

  4. Stacy N, Campbell D, Ford P. Arecibo radar mapping of the Lunar Poles: A search for ice deposits. Science, 1997, 176(6): 148–152

    Google Scholar 

  5. Heiken G H, Vaniman D T, French B M. Lunar Sourcebook, A User’s Guide to the Moon. Cambridge: Cambridge University Press, 1993

    Google Scholar 

  6. Bussey B, Spudis P. Small spacecraft exploration of the Moon. Acta Astronaut, 2007, 55: 637–64

    Article  Google Scholar 

  7. Troisky V. Investigation of the surfaces of the moon and planets by means of thermal radiation. Proc Roy Soc London, 1967, A296:366–398

    Google Scholar 

  8. Hagfors T. Remote probing of the moon by infrared and microwave emissions and by radar. Radio Sci, 1970, 5: 189–227

    Article  Google Scholar 

  9. Keihm S, Langseth M. Lunar microwave brightness temperature observations reevaluated in the light of Apollo program findings. Icarus, 1975, 24: 211–230

    Article  Google Scholar 

  10. Fa W Z, Jin Y Q. Simulation of brightness temperature from lunar surface and inversion of regolith-layer thickness. J Geophys Res, 2007, 112: E05003

    Article  Google Scholar 

  11. Vasavada A R, Paige D A, Wood S E. Near-surface temperatures on Mercury and the Moon and the stability of polar ice deposits. Icarus, 1999, 141: 179–193

    Article  Google Scholar 

  12. Wang Z Z, Li Y, Zhang X H, et al. In-orbit calibration of and antenna pattern correction to CE-1 Lunar microwave sounder (CELMS) (in Chinese). Sci China Ser D-Earth Sci, 2009, 39(8): 1029–1044

    Google Scholar 

Download references

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Correspondence to WeiGuo Zhang.

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This work was supported by National Natural Science Foundation of China (Grant No. 40601066) and Chinese “Chang’E-1“ Project Microwave Radiometer Item.

Zhang W G, Jiang J S, Liu H G, et al. Distribution and anomaly of microwave emission at Lunar South Pole. Sci China Earth Sci, 2010, 53: 465–474, doi: 10.1007/s11430-009-0201-1

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Zhang, W., Jiang, J., Liu, H. et al. Distribution and anomaly of microwave emission at Lunar South Pole. Sci. China Earth Sci. 53, 465–474 (2010). https://doi.org/10.1007/s11430-009-0201-1

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  • DOI: https://doi.org/10.1007/s11430-009-0201-1

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