Published February 2020 | Version Published + Accepted Version + Supplemental Material
Journal Article Open

Hydrogen fluence in Genesis collectors: Implications for acceleration of solar wind and for solar metallicity

Abstract

NASA's Genesis mission was flown to capture samples of the solar wind and return them to the Earth for measurement. The purpose of the mission was to determine the chemical and isotopic composition of the Sun with significantly better precision than known before. Abundance data are now available for noble gases, magnesium, sodium, calcium, potassium, aluminum, chromium, iron, and other elements. Here, we report abundance data for hydrogen in four solar wind regimes collected by the Genesis mission (bulk solar wind, interstream low‐energy wind, coronal hole high‐energy wind, and coronal mass ejections). The mission was not designed to collect hydrogen, and in order to measure it, we had to overcome a variety of technical problems, as described herein. The relative hydrogen fluences among the four regimes should be accurate to better than ±5–6%, and the absolute fluences should be accurate to ±10%. We use the data to investigate elemental fractionations due to the first ionization potential during acceleration of the solar wind. We also use our data, combined with regime data for neon and argon, to estimate the solar neon and argon abundances, elements that cannot be measured spectroscopically in the solar photosphere.

Additional Information

© 2019 The Meteoritical Society. Received 05 November 2018; revision accepted 26 October 2019. We thank the Genesis curatorial facility at JSC for working with us to get the right samples for this work. The paper benefited from a thoughtful review by Martin Laming. Supported by NASA grants NNX09AC32G, NNX14AF25G, and NNX17AE73G to G.R.H. and NNX09AC35G, NNX14AF26G, and 80NSSC17K0025 to D.S.B.

Attached Files

Published - Huss_et_al-2020-Meteoritics___Planetary_Science.pdf

Accepted Version - nihms-1569618.pdf

Supplemental Material - maps13420-sup-0001-tables1.docx

Supplemental Material - maps13420-sup-0002-tables2.docx

Supplemental Material - maps13420-sup-0003-supinfo1.xlsx

Supplemental Material - maps13420-sup-0004-supinfo2.xlsx

Supplemental Material - maps13420-sup-0005-supinfo3.xlsx

Supplemental Material - maps13420-sup-0006-supinfo4.xlsx

Supplemental Material - maps13420-sup-0007-supinfo5.xlsx

Supplemental Material - maps13420-sup-0008-supinfo6.xlsx

Supplemental Material - maps13420-sup-0009-supinfo7.xlsx

Files

Huss_et_al-2020-Meteoritics___Planetary_Science.pdf

Files (19.9 MB)

Name Size Download all
md5:3c22bf5f1ddd696311af98e091886efe
1.9 MB Preview Download
md5:f56252c6f37afa5ec1d15771036260b7
16.8 kB Download
md5:4b8376cfca54df61ac9eb9e94c653613
33.6 kB Download
md5:21b1f956bd382027c0cf382bc6778913
723.5 kB Download
md5:cbeba8d0dfa7bdcc9e67e7e65d7aec47
1.9 MB Download
md5:527e3f001d4b92dd9683d03668f03a9e
4.2 MB Download
md5:58b2063b4cddb57abeca015fc5ae2b01
1.8 MB Download
md5:07e155a35dbdba51f746654ed74d8433
5.9 MB Download
md5:87087e1d51b409c8550119658b77cb59
1.3 MB Download
md5:a602f968a8634aeea05b13480b69b726
108.6 kB Download
md5:f0cb27ba587580b37a0c8b3db6129cd2
2.1 MB Preview Download

Additional details

Identifiers

PMCID
PMC7120949
Eprint ID
100484
DOI
10.1111/maps.13420
Resolver ID
CaltechAUTHORS:20200103-091227050

Related works

Describes
10.1111/maps.13420 (DOI)

Funding

NASA
NNX09AC32G
NASA
NNX14AF25G
NASA
NNX17AE73G
NASA
NNX09AC35G
NASA
NNX14AF26G
NASA
80NSSC17K0025

Dates

Created
2020-01-05
Created from EPrint's datestamp field
Updated
2022-02-15
Created from EPrint's last_modified field

Caltech Custom Metadata

Caltech groups
Division of Geological and Planetary Sciences (GPS)