Solar Wind Electrons Alphas and Protons (SWEAP) Investigation: Design of the Solar Wind and Coronal Plasma Instrument Suite for Solar Probe Plus

The Solar Wind Electrons Alphas and Protons (SWEAP) Investigation on Solar Probe Plus is a four sensor instrument suite that provides complete measurements of the electrons and ionized helium and hydrogen that constitute the bulk of solar wind and coronal plasma. SWEAP consists of the Solar Probe Cu...

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Main Authors: Kasper, Justin C, Abiad, Robert, Austin, Gerry, Balat-Pichelin, Marianne, Bale, Stuart D, Berg, Peter, Bergner, Henry, Berthomier, Matthieu, Bookbinder, Jay, Brodu, Etienne, Caldwell, David, Case, Anthony W, Chandran, Benjamin D G, Cheimets, Peter, Cirtain, Jonathan W, Cranmer, Steven R, Curtis, David W, Daigneau, Peter, Dalton, Greg, Dasgupta, Brahmananda, DeTomaso, David, Diaz-Aguado, Millan, Djordjevic, Blagoje, Donaskowski, Bill, Effinger, Michael, Florinski, Vladimir, Fox, Nichola, Freeman, Mark, Gallagher, Dennis, Gary, S. P, Gauron, Tom, Gates, Richard, Goldstein, Melvin, Golub, Leon, Gordon, Dorothy A, Gurnee, Reid, Guth, Giora, Halekas, Jasper, Hatch, Ken, Heerikuisen, Jacob, Ho, George, Hu, Qiang, Johnson, Greg, Jordan, Steven P, Korreck, Kelly E, Larson, Davin, Li, Gang, Livi, Roberto, Ludlam, Michael, Maksimovic, Milan, McFadden, James P, Marchant, William, Maruca, Bennet A, McComas, David J, Messina, Luciana, Mercer, Tony, Park, Sang, Peddie, Andrew M, Pogorelov, Nikolai, Reinhart, Matthew J, Robinson, Miles, Rosen, Irene, Skoug, Ruth M, Slagle, Amanda, Steinberg, John T, Stevens, Michael L, Taylor, Ellen R, Tiu, Chris, Turin, Paul, Velli, Marco, Webb, Gary, Whittlesey, Phyllis, Wright, Ken, Wu, S. T, Zank, Gary, Belcher, John Winston, Lazarus, Alan J, Szabo, Adam, 1965-, Richardson, John D.
Other Authors: Massachusetts Institute of Technology. Department of Physics
Format: Article
Language:English
Published: Springer Netherlands 2017
Online Access:http://hdl.handle.net/1721.1/107474
https://orcid.org/0000-0002-3789-2992
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author Kasper, Justin C
Abiad, Robert
Austin, Gerry
Balat-Pichelin, Marianne
Bale, Stuart D
Berg, Peter
Bergner, Henry
Berthomier, Matthieu
Bookbinder, Jay
Brodu, Etienne
Caldwell, David
Case, Anthony W
Chandran, Benjamin D G
Cheimets, Peter
Cirtain, Jonathan W
Cranmer, Steven R
Curtis, David W
Daigneau, Peter
Dalton, Greg
Dasgupta, Brahmananda
DeTomaso, David
Diaz-Aguado, Millan
Djordjevic, Blagoje
Donaskowski, Bill
Effinger, Michael
Florinski, Vladimir
Fox, Nichola
Freeman, Mark
Gallagher, Dennis
Gary, S. P
Gauron, Tom
Gates, Richard
Goldstein, Melvin
Golub, Leon
Gordon, Dorothy A
Gurnee, Reid
Guth, Giora
Halekas, Jasper
Hatch, Ken
Heerikuisen, Jacob
Ho, George
Hu, Qiang
Johnson, Greg
Jordan, Steven P
Korreck, Kelly E
Larson, Davin
Li, Gang
Livi, Roberto
Ludlam, Michael
Maksimovic, Milan
McFadden, James P
Marchant, William
Maruca, Bennet A
McComas, David J
Messina, Luciana
Mercer, Tony
Park, Sang
Peddie, Andrew M
Pogorelov, Nikolai
Reinhart, Matthew J
Robinson, Miles
Rosen, Irene
Skoug, Ruth M
Slagle, Amanda
Steinberg, John T
Stevens, Michael L
Taylor, Ellen R
Tiu, Chris
Turin, Paul
Velli, Marco
Webb, Gary
Whittlesey, Phyllis
Wright, Ken
Wu, S. T
Zank, Gary
Belcher, John Winston
Lazarus, Alan J
Szabo, Adam, 1965-
Richardson, John D.
author2 Massachusetts Institute of Technology. Department of Physics
author_facet Massachusetts Institute of Technology. Department of Physics
Kasper, Justin C
Abiad, Robert
Austin, Gerry
Balat-Pichelin, Marianne
Bale, Stuart D
Berg, Peter
Bergner, Henry
Berthomier, Matthieu
Bookbinder, Jay
Brodu, Etienne
Caldwell, David
Case, Anthony W
Chandran, Benjamin D G
Cheimets, Peter
Cirtain, Jonathan W
Cranmer, Steven R
Curtis, David W
Daigneau, Peter
Dalton, Greg
Dasgupta, Brahmananda
DeTomaso, David
Diaz-Aguado, Millan
Djordjevic, Blagoje
Donaskowski, Bill
Effinger, Michael
Florinski, Vladimir
Fox, Nichola
Freeman, Mark
Gallagher, Dennis
Gary, S. P
Gauron, Tom
Gates, Richard
Goldstein, Melvin
Golub, Leon
Gordon, Dorothy A
Gurnee, Reid
Guth, Giora
Halekas, Jasper
Hatch, Ken
Heerikuisen, Jacob
Ho, George
Hu, Qiang
Johnson, Greg
Jordan, Steven P
Korreck, Kelly E
Larson, Davin
Li, Gang
Livi, Roberto
Ludlam, Michael
Maksimovic, Milan
McFadden, James P
Marchant, William
Maruca, Bennet A
McComas, David J
Messina, Luciana
Mercer, Tony
Park, Sang
Peddie, Andrew M
Pogorelov, Nikolai
Reinhart, Matthew J
Robinson, Miles
Rosen, Irene
Skoug, Ruth M
Slagle, Amanda
Steinberg, John T
Stevens, Michael L
Taylor, Ellen R
Tiu, Chris
Turin, Paul
Velli, Marco
Webb, Gary
Whittlesey, Phyllis
Wright, Ken
Wu, S. T
Zank, Gary
Belcher, John Winston
Lazarus, Alan J
Szabo, Adam, 1965-
Richardson, John D.
author_sort Kasper, Justin C
collection MIT
description The Solar Wind Electrons Alphas and Protons (SWEAP) Investigation on Solar Probe Plus is a four sensor instrument suite that provides complete measurements of the electrons and ionized helium and hydrogen that constitute the bulk of solar wind and coronal plasma. SWEAP consists of the Solar Probe Cup (SPC) and the Solar Probe Analyzers (SPAN). SPC is a Faraday Cup that looks directly at the Sun and measures ion and electron fluxes and flow angles as a function of energy. SPAN consists of an ion and electron electrostatic analyzer (ESA) on the ram side of SPP (SPAN-A) and an electron ESA on the anti-ram side (SPAN-B). The SPAN-A ion ESA has a time of flight section that enables it to sort particles by their mass/charge ratio, permitting differentiation of ion species. SPAN-A and -B are rotated relative to one another so their broad fields of view combine like the seams on a baseball to view the entire sky except for the region obscured by the heat shield and covered by SPC. Observations by SPC and SPAN produce the combined field of view and measurement capabilities required to fulfill the science objectives of SWEAP and Solar Probe Plus. SWEAP measurements, in concert with magnetic and electric fields, energetic particles, and white light contextual imaging will enable discovery and understanding of solar wind acceleration and formation, coronal and solar wind heating, and particle acceleration in the inner heliosphere of the solar system. SPC and SPAN are managed by the SWEAP Electronics Module (SWEM), which distributes power, formats onboard data products, and serves as a single electrical interface to the spacecraft. SWEAP data products include ion and electron velocity distribution functions with high energy and angular resolution. Full resolution data are stored within the SWEM, enabling high resolution observations of structures such as shocks, reconnection events, and other transient structures to be selected for download after the fact. This paper describes the implementation of the SWEAP Investigation, the driving requirements for the suite, expected performance of the instruments, and planned data products, as of mission preliminary design review.
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spelling mit-1721.1/1074742022-09-29T09:04:57Z Solar Wind Electrons Alphas and Protons (SWEAP) Investigation: Design of the Solar Wind and Coronal Plasma Instrument Suite for Solar Probe Plus Kasper, Justin C Abiad, Robert Austin, Gerry Balat-Pichelin, Marianne Bale, Stuart D Berg, Peter Bergner, Henry Berthomier, Matthieu Bookbinder, Jay Brodu, Etienne Caldwell, David Case, Anthony W Chandran, Benjamin D G Cheimets, Peter Cirtain, Jonathan W Cranmer, Steven R Curtis, David W Daigneau, Peter Dalton, Greg Dasgupta, Brahmananda DeTomaso, David Diaz-Aguado, Millan Djordjevic, Blagoje Donaskowski, Bill Effinger, Michael Florinski, Vladimir Fox, Nichola Freeman, Mark Gallagher, Dennis Gary, S. P Gauron, Tom Gates, Richard Goldstein, Melvin Golub, Leon Gordon, Dorothy A Gurnee, Reid Guth, Giora Halekas, Jasper Hatch, Ken Heerikuisen, Jacob Ho, George Hu, Qiang Johnson, Greg Jordan, Steven P Korreck, Kelly E Larson, Davin Li, Gang Livi, Roberto Ludlam, Michael Maksimovic, Milan McFadden, James P Marchant, William Maruca, Bennet A McComas, David J Messina, Luciana Mercer, Tony Park, Sang Peddie, Andrew M Pogorelov, Nikolai Reinhart, Matthew J Robinson, Miles Rosen, Irene Skoug, Ruth M Slagle, Amanda Steinberg, John T Stevens, Michael L Taylor, Ellen R Tiu, Chris Turin, Paul Velli, Marco Webb, Gary Whittlesey, Phyllis Wright, Ken Wu, S. T Zank, Gary Belcher, John Winston Lazarus, Alan J Szabo, Adam, 1965- Richardson, John D. Massachusetts Institute of Technology. Department of Physics MIT Kavli Institute for Astrophysics and Space Research Belcher, John Winston Lazarus, Alan J Richardson, John D The Solar Wind Electrons Alphas and Protons (SWEAP) Investigation on Solar Probe Plus is a four sensor instrument suite that provides complete measurements of the electrons and ionized helium and hydrogen that constitute the bulk of solar wind and coronal plasma. SWEAP consists of the Solar Probe Cup (SPC) and the Solar Probe Analyzers (SPAN). SPC is a Faraday Cup that looks directly at the Sun and measures ion and electron fluxes and flow angles as a function of energy. SPAN consists of an ion and electron electrostatic analyzer (ESA) on the ram side of SPP (SPAN-A) and an electron ESA on the anti-ram side (SPAN-B). The SPAN-A ion ESA has a time of flight section that enables it to sort particles by their mass/charge ratio, permitting differentiation of ion species. SPAN-A and -B are rotated relative to one another so their broad fields of view combine like the seams on a baseball to view the entire sky except for the region obscured by the heat shield and covered by SPC. Observations by SPC and SPAN produce the combined field of view and measurement capabilities required to fulfill the science objectives of SWEAP and Solar Probe Plus. SWEAP measurements, in concert with magnetic and electric fields, energetic particles, and white light contextual imaging will enable discovery and understanding of solar wind acceleration and formation, coronal and solar wind heating, and particle acceleration in the inner heliosphere of the solar system. SPC and SPAN are managed by the SWEAP Electronics Module (SWEM), which distributes power, formats onboard data products, and serves as a single electrical interface to the spacecraft. SWEAP data products include ion and electron velocity distribution functions with high energy and angular resolution. Full resolution data are stored within the SWEM, enabling high resolution observations of structures such as shocks, reconnection events, and other transient structures to be selected for download after the fact. This paper describes the implementation of the SWEAP Investigation, the driving requirements for the suite, expected performance of the instruments, and planned data products, as of mission preliminary design review. United States. National Aeronautics and Space Administration (contract NNN06AA01C (Task NNN10AA08T)) 2017-03-17T18:15:01Z 2017-03-17T18:15:01Z 2015-10 2015-01 2016-08-18T15:18:18Z Article http://purl.org/eprint/type/JournalArticle 0038-6308 1572-9672 http://hdl.handle.net/1721.1/107474 Kasper, Justin C., Robert Abiad, Gerry Austin, Marianne Balat-Pichelin, Stuart D. Bale, John W. Belcher, Peter Berg, et al. “Solar Wind Electrons Alphas and Protons (SWEAP) Investigation: Design of the Solar Wind and Coronal Plasma Instrument Suite for Solar Probe Plus.” Space Sci Rev (October 29, 2015). https://orcid.org/0000-0002-3789-2992 en http://dx.doi.org/10.1007/s11214-015-0206-3 Space Science Reviews Creative Commons Attribution http://creativecommons.org/licenses/by/4.0/ The Author(s) application/pdf Springer Netherlands Springer Netherlands
spellingShingle Kasper, Justin C
Abiad, Robert
Austin, Gerry
Balat-Pichelin, Marianne
Bale, Stuart D
Berg, Peter
Bergner, Henry
Berthomier, Matthieu
Bookbinder, Jay
Brodu, Etienne
Caldwell, David
Case, Anthony W
Chandran, Benjamin D G
Cheimets, Peter
Cirtain, Jonathan W
Cranmer, Steven R
Curtis, David W
Daigneau, Peter
Dalton, Greg
Dasgupta, Brahmananda
DeTomaso, David
Diaz-Aguado, Millan
Djordjevic, Blagoje
Donaskowski, Bill
Effinger, Michael
Florinski, Vladimir
Fox, Nichola
Freeman, Mark
Gallagher, Dennis
Gary, S. P
Gauron, Tom
Gates, Richard
Goldstein, Melvin
Golub, Leon
Gordon, Dorothy A
Gurnee, Reid
Guth, Giora
Halekas, Jasper
Hatch, Ken
Heerikuisen, Jacob
Ho, George
Hu, Qiang
Johnson, Greg
Jordan, Steven P
Korreck, Kelly E
Larson, Davin
Li, Gang
Livi, Roberto
Ludlam, Michael
Maksimovic, Milan
McFadden, James P
Marchant, William
Maruca, Bennet A
McComas, David J
Messina, Luciana
Mercer, Tony
Park, Sang
Peddie, Andrew M
Pogorelov, Nikolai
Reinhart, Matthew J
Robinson, Miles
Rosen, Irene
Skoug, Ruth M
Slagle, Amanda
Steinberg, John T
Stevens, Michael L
Taylor, Ellen R
Tiu, Chris
Turin, Paul
Velli, Marco
Webb, Gary
Whittlesey, Phyllis
Wright, Ken
Wu, S. T
Zank, Gary
Belcher, John Winston
Lazarus, Alan J
Szabo, Adam, 1965-
Richardson, John D.
Solar Wind Electrons Alphas and Protons (SWEAP) Investigation: Design of the Solar Wind and Coronal Plasma Instrument Suite for Solar Probe Plus
title Solar Wind Electrons Alphas and Protons (SWEAP) Investigation: Design of the Solar Wind and Coronal Plasma Instrument Suite for Solar Probe Plus
title_full Solar Wind Electrons Alphas and Protons (SWEAP) Investigation: Design of the Solar Wind and Coronal Plasma Instrument Suite for Solar Probe Plus
title_fullStr Solar Wind Electrons Alphas and Protons (SWEAP) Investigation: Design of the Solar Wind and Coronal Plasma Instrument Suite for Solar Probe Plus
title_full_unstemmed Solar Wind Electrons Alphas and Protons (SWEAP) Investigation: Design of the Solar Wind and Coronal Plasma Instrument Suite for Solar Probe Plus
title_short Solar Wind Electrons Alphas and Protons (SWEAP) Investigation: Design of the Solar Wind and Coronal Plasma Instrument Suite for Solar Probe Plus
title_sort solar wind electrons alphas and protons sweap investigation design of the solar wind and coronal plasma instrument suite for solar probe plus
url http://hdl.handle.net/1721.1/107474
https://orcid.org/0000-0002-3789-2992
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