Dust in and Around the Heliosphere and Astrospheres

Author:

Sterken Veerle J.ORCID,Baalmann Lennart R.ORCID,Draine Bruce T.ORCID,Godenko Egor,Herbst KonstantinORCID,Hsu Hsiang-Wen,Hunziker SilvanORCID,Izmodenov VladislavORCID,Lallement Rosine,Slavin Jonathan D.ORCID

Abstract

AbstractInterstellar dust particles were discovered in situ, in the solar system, with the Ulysses mission’s dust detector in 1992. Ever since, more interstellar dust particles have been measured inside the solar system by various missions, providing insight into not only the composition of such far-away visitors, but also in their dynamics and interaction with the heliosphere. The dynamics of interstellar (and interplanetary) dust in the solar/stellar systems depend on the dust properties and also on the space environment, in particular on the heliospheric/astrospheric plasma, and the embedded time-variable magnetic fields, via Lorentz forces. Also, solar radiation pressure filters out dust particles depending on their composition. Charge exchanges between the dust and the ambient plasma occur, and pick-up ions can be created. The role of the dust for the physics of the heliosphere and astrospheres is fairly unexplored, but an important and a rapidly growing topic of investigation. This review paper gives an overview of dust processes in heliospheric and astrospheric environments, with its resulting dynamics and consequences. It discusses theoretical modeling, and reviews in situ measurements and remote sensing of dust in and near our heliosphere and astrospheres, with the latter being a newly emerging field of science. Finally, it summarizes the open questions in the field.

Funder

European Research Council

Deutsche Forschungsgemeinschaft

Swiss Federal Institute of Technology Zurich

Publisher

Springer Science and Business Media LLC

Subject

Space and Planetary Science,Astronomy and Astrophysics

Reference114 articles.

1. Ade PAR, Aghanim N, Alves MIR, Arnaud M, Ashdown M, Aumont J, Baccigalupi C, Banday AJ, Barreiro RB, Bartlett JG, Bartolo N, Battaner E, Benabed K, Benoît A, Benoit-Lévy A, Bernard JP, Bersanelli M, Bielewicz P, Bock JJ, Bonaldi A, Bonavera L, Bond JR, Borrill J, Bouchet FR, Boulanger F, Bucher M, Burigana C, Butler RC, Calabrese E, Cardoso JF, Catalano A, Challinor A, Chamballu A, Chary RR, Chiang HC, Christensen PR, Colombi S, Colombo LPL, Combet C, Couchot F, Coulais A, Crill BP, Curto A, Cuttaia F, Danese L, Davies RD, Davis RJ, de Bernardis P, de Rosa A, de Zotti G, Delabrouille J, Delouis JM, Désert FX, Dickinson C, Diego JM, Dole H, Donzelli S, Doré O, Douspis M, Ducout A, Dupac X, Efstathiou G, Elsner F, Enßlin TA, Eriksen HK, Falgarone E, Fergusson J, Finelli F, Forni O, Frailis M, Fraisse AA, Franceschi E, Frejsel A, Galeotta S, Galli S, Ganga K, Ghosh T, Giard M, Giraud-Héraud Y, Gjerløw E, González-Nuevo J, Górski KM, Gratton S, Gregorio A, Gruppuso A, Gudmundsson JE, Hansen FK, Hanson D, Harrison DL, Helou G, Henrot-Versillé S, Hernández-Monteagudo C, Herranz D, Hildebrandt SR, Hivon E, Hobson M, Holmes WA, Hornstrup A, Hovest W, Huffenberger KM, Hurier G, Jaffe AH, Jaffe TR, Jones WC, Juvela M, Keihänen E, Keskitalo R, Kisner TS, Kneissl R, Knoche J, Kunz M, Kurki-Suonio H, Lagache G, Lähteenmäki A, Lamarre JM, Lasenby A, Lattanzi M, Lawrence CR, Leahy JP, Leonardi R, Lesgourgues J, Levrier F, Liguori M, Lilje PB, Linden-Vørnle M, López-Caniego M, Lubin PM, Macías-Pérez JF, Maggio G, Maino D, Mandolesi N, Mangilli A, Maris M, Marshall DJ, Martin PG, Martínez-González E, Masi S, Matarrese S, McGehee P, Meinhold PR, Melchiorri A, Mendes L, Mennella A, Migliaccio M, Mitra S, Miville-Deschênes MA, Moneti A, Montier L, Morgante G, Mortlock D, Moss A, Munshi D, Murphy JA, Nati F, Natoli P, Netterfield CB, Nørgaard-Nielsen HU, Noviello F, Novikov D, Novikov I, Orlando E, Oxborrow CA, Paci F, Pagano L, Pajot F, Paladini R, Paoletti D, Partridge B, Pasian F, Patanchon G, Pearson TJ, Peel M, Perdereau O, Perotto L, Perrotta F, Pettorino V, Piacentini F, Piat M, Pierpaoli E, Pietrobon D, Plaszczynski S, Pointecouteau E, Polenta G, Pratt GW, Prézeau G, Prunet S, Puget JL, Rachen JP, Reach WT, Rebolo R, Reinecke M, Remazeilles M, Renault C, Renzi A, Ristorcelli I, Rocha G, Rosset C, Rossetti M, Roudier G, Rubiño-Martín JA, Rusholme B, Sandri M, Santos D, Savelainen M, Savini G, Scott D, Seiffert MD, Shellard EPS, Spencer LD, Stolyarov V, Stompor R, Strong AW, Sudiwala R, Sunyaev R, Sutton D, Suur-Uski AS, Sygnet JF, Tauber JA, Terenzi L, Toffolatti L, Tomasi M, Tristram M, Tucci M, Tuovinen J, Umana G, Valenziano L, Valiviita J, Van Tent F, Vidal M, Vielva P, Villa F, Wade LA, Wandelt BD, Watson R, Wehus IK, Wilkinson A, Yvon D, Zacchei A, Zonca A (Planck Collaboration) (2016) Planck 2015 results. XXV. Diffuse low-frequency Galactic foregrounds. Astron Astrophys 594:A25. https://doi.org/10.1051/0004-6361/201526803. arXiv:1506.06660

2. Alexashov DB, Katushkina OA, Izmodenov VV, Akaev PS (2016) Interstellar dust distribution outside the heliopause: deflection at the heliospheric interface. Mon Not R Astron Soc 458:2553–2564. https://doi.org/10.1093/mnras/stw514

3. Altobelli N (2004) Monitoring of the interstellar dust stream in the inner solar system using data of different spacecraft. PhD thesis, Ruprecht-Karls-Universität Heidelberg

4. Altobelli N, Postberg F, Fiege K, Trieloff M, Kimura H, Sterken VJ, Hsu HW, Hillier J, Khawaja N, Moragas-Klostermeyer G, Blum J, Burton M, Srama R, Kempf S, Gruen E (2016) Flux and composition of interstellar dust at Saturn from Cassini’s Cosmic Dust Analyzer. Science 352:312–318. https://doi.org/10.1126/science.aac6397

5. Baalmann LR, Scherer K, Kleimann J, Fichtner H, Bomans DJ, Weis K (2021) Simulating observable structures due to a perturbed interstellar medium in front of astrospheric bow shocks in 3D MHD. Astron Astrophys 650:A36. https://doi.org/10.1051/0004-6361/202039836. arXiv:2104.03748

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