HR: 14:00h
AN: A43B-01 [Abstracts]
TI: Observing the Earth's radiation budget at the top of the atmosphere using photometers on the
Moon's surface
AU: * Palle, E
EM: epalle@iac.es
AF: Instituto de Astrofisica de Canarias, Via Lactea s/n, LaLaguna, E38205, Spain
AB:
The Earth's albedo is one the least studied of the fundamental climate parameters. The albedo is a bi-directional
property, and there is a high degree of anisotropy in the reflected light from a given surface. However,
simultaneously observing all points on Earth from all reflecting angles is a practical impossibility. Therefore, all
measurements from which albedo can be inferred require assumptions and/or modeling to derive a good
estimate. Nowadays, albedo measurements are taken regularly either from low Earth orbit satellite platforms or
from ground-based measurements of the earthshine in the dark side of the Moon. But the results from these
different measurements are not in satisfactory agreement. Clearly, the availability of different albedo databases
and their inter-comparisons can help to constrain the assumptions necessary to reduce the uncertainty of the
albedo estimates.
In recent years, there has been a renewed interest in the development of robotic and manned exploration
missions to the Moon. This return to the Moon will enable diverse exploration and scientific opportunities. Here
we discuss the possibility of a lunar-based Earth radiation budget monitoring experiment, the Lunar Terrestrial
Observatory (LTO), and evaluate its scientific and practical advantages compared to the other, more standard,
observing platforms.
DE: 0321 Cloud/radiation interaction
DE: 0900 EXPLORATION GEOPHYSICS
DE: 1600 GLOBAL CHANGE
DE: 3300 ATMOSPHERIC PROCESSES
DE: 6200 PLANETARY SCIENCES: SOLAR SYSTEM OBJECTS
SC: Atmospheric Sciences [A]
MN: 2007 Joint Assembly