• IWF
  • Institute
    • IWF Search
    • This is us
    • The Team
    • Scientific Advisory Board
    • Working with us
    • Teaching
    • Infrastructure
    • 50+ years IWF Graz
    • Gender & Diversity
  • Logo Logo
  • Space Research InstituteSpace Research Institute
    Space Research
    Institute
  • iwf.web
  • EN
  • DE
Open search bar
Open Main navigation
  • Institute
    • This is us
    • The Team
    • Scientific Advisory Board
    • Working with us
    • Teaching
    • Infrastructure
    • 50+ years IWF Graz
    • Gender & Diversity
  • Research
    • Research Groups
    • Space missions
    • Projects
    • Young Researcher Program
    • Science and Art
  • YRP@Graz
  • Publications
    • Publication search
    • Refereed Articles
    • Proceedings & Book Chapters
    • Books & more
    • Theses
    • Annual Reports
  • Latest
    • News
    • Events
    • Open positions
    • Space Blog
    • Picture Gallery
    • IWF in the media
  • Contact
    • iwf.web
    • EN
    • DE
Open search bar
  • IWF
  • Institute
    • IWF Search
    • This is us
    • The Team
    • Scientific Advisory Board
    • Working with us
    • Teaching
    • Infrastructure
    • 50+ years IWF Graz
    • Gender & Diversity
  • Share via email
  • Share on LinkedIn
  • Share on Facebook
  • Share on Bluesky

Filter

The search via the website www.oeaw.ac.at is a faceted search:
In the first input field you can enter a search term and use the filters (facets) below to limit the result.

Make a selection under the Person facet in order to find specific members or employees. With the page type facet you can select "Events" for a search for OeAW events, "News" for news from the OeAW and "Pages" for fixed pages within the OeAW website.

Displaying results 3521 to 3530 of 5268.
  • Publications
    Magnetosheath microstructure: Mirror mode waves and jets during southward IP magnetic field

    Blanco-Cano, X., Preisser, L., Kajdic, P., & Rojas-Castillo, D. (2020). Magnetosheath microstructure: Mirror mode waves and jets during southward IP magnetic field. Journal of Geophysical Research: Space Physics, 125, e2020JA027940. https://doi.org/10.1029/2020JA027940

    • DOI
    • RIS
    • ENW
    • BIB
  • Publications
    Maximum-variance gradiometer technique for removal of spacecraft-generated disturbances from magnetic field data

    Constantinescu, O., Auster, H., Delva, M., Hillenmaier, O., Magnes, W., & Plaschke, F. (2020). Maximum-variance gradiometer technique for removal of spacecraft-generated disturbances from magnetic field data. Geoscientific Instrumentation, Methods and Data Systems, 9, 451–469. https://doi.org/10.5194/gi-9-451-2020

    • DOI
    • RIS
    • ENW
    • BIB
  • Publications
    Prediction of the in situ coronal mass ejection rate for solar cycle 25: Implications for Parker Solar Probe in situ observations

    Möstl, C., Weiss, A., Bailey, R., Reiss, M., Amerstorfer, T., Hinterreiter, J., Bauer, M., McIntosh, S., Lugaz, N., & Stansby, D. (2020). Prediction of the in situ coronal mass ejection rate for solar cycle 25: Implications for Parker Solar Probe in situ observations. Astrophysical Journal, 903, 92. https://doi.org/10.3847/1538-4357/abb9a1

    • DOI
    • RIS
    • ENW
    • BIB
  • Publications
    Forecasting GICs and geoelectric fields from solar wind data using LSTMs: Application in Austria

    Bailey, R., Leonhardt, R., Möstl, C., Beggan, C., Reiss, M., Bhaskar, A., & Weiss, A. (2022). Forecasting GICs and geoelectric fields from solar wind data using LSTMs: Application in Austria. Space Weather, 20, e2021SW002907. https://doi.org/10.1029/2021SW002907

    • DOI
    • RIS
    • ENW
    • BIB
  • Publications
    A rich hydrocarbon chemistry and high C to O ratio in the inner disk around a very low-mass star

    Tabone, B., Bettoni, G., Dishoeck, E., Arabhavi, A., Grant, S., Gasman, D., Henning, T., Kamp, I., Güdel, M., Lagage, P., Ray, T., Vandenbussche, B., Abergel, A., Absil, O., Argyriou, I., Barrado, D., Boccaletti, A., Bouwman, J., Garatti, A., ... Wright, G. (2023). A rich hydrocarbon chemistry and high C to O ratio in the inner disk around a very low-mass star. Nature Astronomy, 7, 805-813. https://doi.org/10.1038/s41550-023-01965-3

    • DOI
    • RIS
    • ENW
    • BIB
  • Publications
    Structure and evolution of the diamagnetic cavity at comet 67P/Churyumov-Gerasimenko

    Goetz, C., Koenders, C., Hansen, K., Burch, J., Carr, C., Eriksson, A., Frühauff, D., Güttler, C., Henri, P., Nilsson, H., Richter, I., Rubin, M., Sierks, H., Tsurutani, B., Volwerk, M., & Glassmeier, K. (2016). Structure and evolution of the diamagnetic cavity at comet 67P/Churyumov-Gerasimenko. Monthly Notices of the Royal Astronomical Society: Letters, 463, S459-S467. https://doi.org/10.1093/mnras/stw3148

    • DOI
    • RIS
    • ENW
    • BIB
  • Publications
    Numerical simulations of magnetic Kelvin-Helmholtz instability at a twisted solar flux tube

    Murawski, K., Chmielewski, P., Zaqarashvili, T., & Khomenko, E. (2016). Numerical simulations of magnetic Kelvin-Helmholtz instability at a twisted solar flux tube. Monthly Notices of the Royal Astronomical Society, 459, 2566-2572. https://doi.org/10.1093/mnras/stw703

    • DOI
    • RIS
    • ENW
    • BIB
  • Publications
    Evolution of a typical ion-scale magnetic flux rope caused by thermal pressure enhancement

    Teh, W., Nakamura, T., Nakamura, R., Baumjohann, W., Russell, C., Pollock, C., Lindqvist, P., Ergun, R., Burch, J., Torbert, R., & Giles, B. (2017). Evolution of a typical ion-scale magnetic flux rope caused by thermal pressure enhancement. Journal of Geophysical Research, 122, 2040-2050. https://doi.org/10.1002/2016JA023777

    • DOI
    • RIS
    • ENW
    • BIB
  • Publications
    DEM modelling of a dynamic penetration process on Mars as a part of the NASA InSight Mission

    Poganski, J., Schweiger, H., Kargl, G., & Kömle, N. (2017). DEM modelling of a dynamic penetration process on Mars as a part of the NASA InSight Mission. Procedia Engineering, 175, 43-50. https://doi.org/10.1016/j.proeng.2017.01.013

    • DOI
    • RIS
    • ENW
    • BIB
  • Publications
    MMS observation of asymmetric reconnection supported by 3-D electron pressure divergence

    Genestreti, K., Varsani, A., Burch, J., Cassak, P., Torbert, R., Nakamura, R., Ergun, R., Phan, T., Toledo-Redondo, S., Hesse, M., Wang, S., Giles, B., Russell, C., Vörös, Z., Hwang, K., Eastwood, J., Lavraud, B., Escoubet, C., Fear, R., ... Baumjohann, W. (2018). MMS observation of asymmetric reconnection supported by 3-D electron pressure divergence. Journal of Geophysical Research: Space Physics, 123, 1806-1821. https://doi.org/10.1002/2017JA025019

    • DOI
    • RIS
    • ENW
    • BIB
  • ....
  • 348
  • 349
  • 350
  • 351
  • 352
  • 353
  • 354
  • 355
  • 356
  • 357
  • ....

OeAW Space Research Institute

Schmiedlstraße 6
8042 Graz, Austria
T +43 (316) 4120-400
office.iwf(at)oeaw.ac.at

Lustbühel Observatory
Lustbühelstraße 46
8042 Graz, Austria

Contact

IWF InternAL

 

Follow us on

  • ÖAW onLinkedIn
  • ÖAW onBluesky
  • ÖAW onYoutube

IWF Mailing Lists

Receive regular information on research results and events of the IWF.

Register now

Imprint Data Protection Accessibility

© Copyright OEAW

Notice about cookies

This site uses cookies. They ensure essential functionalities of the website and enable us to continuously optimize content. Help us by agreeing to the collection of statistical data and the presentation of external multimedia content. You can change your cookie settings at any time. Further information can be found in the privacy settings and by clicking the Data Protection Link.

These cookies are required for the smooth functioning of our website.

Name Purpose Storage duration Type Provider
CookieConsent Remembers your consent to the use of cookies. 1 year HTML Web Consent
fe_typo_user Assigns your browser to a session on the server. This only affects the content you see and is not evaluated or processed by us - HTTP Web User

With the help of these cookies, we strive to make our offer even more attractive for you. The user flow can be analyzed and assessed using pseudonymised data from website users. This gives us the opportunity to optimize website content.

Name Purpose Storage duration Type Provider
_pk_id Used to store a few details about the user like unique visitor ID. 13 months HTML Matomo-id
_pk_ref Used to store information about the user's referring website. 6 months HTML Matomo-ref
_pk_ses Short-term cookie to save temporary data from the visit. 30 minutes HTML Matomo-ses
_pk_cvar Short-term cookie to save temporary data from the visit. 30 minutes HTML Matomo-cvar
_pk_hsr Short lived cookie used to temporarily store data for the visit. 30 minutes HTML Matomo

With the help of these cookies, we strive to improve the information we offer users by providing multimedia or interactive content such as videos.

Name Purpose Storage duration Type Provider
YouTube A connection to YouTube will be established to view videos. - Connection YouTube
SoundCloud A connection to SoundCloud will be established to play audio files. - Connection SoundCloud
Twitter A connection to Twitter will be established to display tweets. - missing translation: type. Twitter
_cs_c Indicates whether the user has consented to ContentSquare tracking. 394 days missing translation: type. Spotify (ContentSquare)
_cs_id Stores a unique user ID for ContentSquare session analysis. 394 days missing translation: type. Spotify (ContentSquare)
_ga Used to distinguish users. 400 days missing translation: type. Google Analytics
_ga_BMC5VGR8YS Used by Google Analytics to persist session state. 400 days missing translation: type. Google Analytics
_ga_S0T2DJJFZM Used by Google Analytics to persist session state. 399 days missing translation: type. Google Analytics
_ga_ZWG1NSHWD8 Used by Google Analytics to persist session state. 400 days missing translation: type. Google Analytics
_ga_ZWRF3NLZJZ Used by Google Analytics to persist session state. 400 days missing translation: type. Google Analytics
_gid Used to distinguish users. 1 days missing translation: type. Google Analytics
_ScCbts Stores temporary session or playback preferences. 6 days missing translation: type. Spotify
_scid Spotify advertising ID used for analytics and retargeting. 395 days missing translation: type. Spotify
_scid_r Spotify advertising ID used for analytics and retargeting. 395 days missing translation: type. Spotify
eupubconsent-v2 Stores the IAB Transparency & Consent Framework string. 364 days missing translation: type. IAB / Spotify
OptanonAlertBoxClosed Saves the state of your data protection consent. 364 days missing translation: type. OneTrust
OptanonConsent Saves the state of your data protection consent. 365 days missing translation: type. OneTrust
sp_adid Spotify advertising identifier. 365 days missing translation: type. Spotify
sp_landing Tracks which page the user landed on within Spotify. 1 days missing translation: type. Spotify
sp_m Stores the user’s market region (Spotify). 399 days missing translation: type. Spotify
sp_t Session token used for Spotify playback and access. 365 days missing translation: type. Spotify