most citedExtremely high reflection of solar wind protons as neutral hydrogen atoms from regolith in space

160 citations · 615 across the 7 of their papers we have counts for

collaborators

7 papers

astro-ph.EP2010160 cited

Extremely high reflection of solar wind protons as neutral hydrogen atoms from regolith in space

Martin Wieser, Stas Barabash, Yoshifumi Futaana +7

We report on measurements of extremely high reflection rates of solar wind particles from regolith-covered lunar surfaces. Measurements by the Sub-keV Atom Reflecting Analyzer (SAR…

astro-ph.EP20103 cited

Studying the Lunar-Solar Wind Interaction with the SARA Experiment aboard the Indian Lunar Mission Chandrayaan-1

Anil Bhardwaj, Stas Barabash, M. B. Dhanya +7

The first Indian lunar mission Chandrayaan-1 was launched on 22 October 2008. The Sub-keV Atom Reflecting Analyzer (SARA) instrument onboard Chandrayaan-1 consists of an energetic…

astro-ph.EP2010151 cited

X-rays from solar system objects

Anil Bhardwaj, Ronald F. Elsner, G. Randall Gladstone +11

During the last few years our knowledge about the X-ray emission from bodies within the solar system has significantly improved. Several new solar system objects are now known to s…

astro-ph.EP201048 cited

Protons in the near-lunar wake observed by the Sub-keV Atom Reflection Analyzer on board Chandrayaan-1

Yoshifumi Futaana, Stas Barabash, Martin Wieser +7

Significant proton fluxes were detected in the near wake region of the Moon by an ion mass spectrometer on board Chandrayaan-1. The energy of these nightside protons is slightly hi…

astro-ph.EP2010155 cited

First observation of a mini-magnetosphere above a lunar magnetic anomaly using energetic neutral atoms

Martin Wieser, Stas Barabash, Yoshifumi Futaana +7

The Sub-keV Atom Reflecting Analyzer (SARA) instrument on the Indian Chandrayaan-1 spacecraft has produced for the first time an image of a lunar magnetic anomaly in backscattered…

astro-ph.EP201046 cited

Monte Carlo model of electron energy degradation in a CO2 atmosphere

Anil Bhardwaj, Sonal Kumar Jain

A Monte Carlo model has been developed to study the degradation of <1000 eV electrons in an atmosphere of CO2, which is one of the most abundant species in Mars' and Venus' atmosph…