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Revisiting the field geology of Taurus-Littrow
DOI: 10.1016/j.icarus.2016.11.042 Bibcode: 2017Icar..298....2S

Weiss, B. P.; Robinson, M. S.; Petro, N. E. +3 more

Integration of Apollo 17 field observations and photographs, sample investigations, Lunar Reconnaissance Orbiter Camera images, Chandrayaan-1 Moon Mineralogy Mapper (M3) spectra, and Miniature Radio Frequency (Mini-RF) S-band radar images provides new insights into the geology of the valley of Taurus-Littrow on the Moon. Connecting the …

2017 Icarus
Chandrayaan-1 60
Upper limit of helium-4 in the sunlit lunar exosphere during magnetotail passage under low solar wind condition: Result from CHACE aboard MIP in Chandrayaan-1
DOI: 10.1016/j.icarus.2017.07.001 Bibcode: 2017Icar..297..189D

Bhardwaj, Anil; Sridharan, R.; Dhanya, M. B. +3 more

The outcome of efforts to detect He-4 in the sunlit lunar exosphere as evinced by the CHACE mass spectrometer aboard the Moon Impact Probe in Chandrayaan-1 is reported. The in situ observations by CHACE were carried out in the lunar dayside, covering a broad range of lunar latitudes, when the Moon was on the verge of exiting the Earth's magnetotai…

2017 Icarus
Chandrayaan-1 5
Corrigendum to "Observation of Neon at mid and high latitudes in the sunlit Lunar Exosphere: Results from CHACE aboard MIP/Chandrayaan-1", Vol. 272 (2016), pp 206-211, doi 10.1016/j.icarus.2016.02.030
DOI: 10.1016/j.icarus.2016.10.020 Bibcode: 2017Icar..284..489P

Bhardwaj, Anil; Sridharan, R.; Thampi, Smitha V. +2 more

Our paper titled "Observation of Neon at mid and high latitudes in the sunlit Lunar Exosphere: Results from CHACE aboard MIP/Chandrayaan-1" (Icarus 272 (2016) 206-211) presents the results of the observations on the distribution of neutral Neon in the mid and high lunar latitudes by the CHACE instrument aboard Moon Impact Probe (MIP) in Chandrayaa…

2017 Icarus
Chandrayaan-1 1