Publikationen
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2024
List, F., & Hahn, O. (2024). Perturbation-theory informed integrators for cosmological simulations. Journal of Computational Physics, 513, [113201]. https://doi.org/10.1016/j.jcp.2024.113201
Maíz Apellániz, J., Barbá, R. H., Pantaleoni González, M., Weiler, M., Reed, B. C., Fernández Aranda, R., Crespo Bellido, P., Sota, A., Alfaro, E. J., & Molina Lera, J. A. (2024). The Gaia view on massive stars: EDR3 and what to expect from DR3. Proceedings of the International Astronomical Union, 18. https://doi.org/10.1017/S1743921322003398
Veršič, T., Rejkuba, M., Arnaboldi, M., Gerhard, O., Pulsoni, C., Valenzuela, L. M., Hartke, J., Watkins, L. L., van de Ven, G., & Thater, S. (2024). Shapes of dark matter haloes with discrete globular cluster dynamics: The example of NGC 5128 (Centaurus A). Astronomy and Astrophysics, 687, [A80]. https://doi.org/10.1051/0004-6361/202349097
Derkenne, C., McDermid, R. M., D’Eugenio, F., Foster, C., Khalid, A., Harborne, K. E., van de Sande, J., Croom, S. M., Lagos, C. D. P., Bellstedt, S., Mendel, T. J., Mun, M., Wisnioski, E., Bagge, R. S., Battisti, A. J., Bland-Hawthorn, J., Ferré-Mateu, A., Peng, Y., Santucci, G., ... Ziegler, B. (2024). The MAGPI Survey: massive slow rotator population in place by z ∼ 0.3. Monthly Notices of the Royal Astronomical Society, 531(4), 4602-4610. https://doi.org/10.1093/mnras/stae1407
Hahn, O., List, F., & Porqueres, N. (2024). DISCO-DJ I: a differentiable Einstein-Boltzmann solver for cosmology. Journal of Cosmology and Astroparticle Physics (JCAP), 2024(6), [063]. https://doi.org/10.1088/1475-7516/2024/06/063
Hahn, O. (Redakteur*in), Winkler, L. (Autor*in), & Buehlmann, M. (Autor*in). (2024). cosmicweb.eu: cosmICweb: Cosmological Initial Conditions for Zoom-in Simulations in the Cloud. Software oder Datenbank https://cosmicweb.eu
Nitschai, M. S., Neumayer, N., Häberle, M., Clontz, C., Seth, A. C., Milone, A. P., Alfaro-Cuello, M., Bellini, A., Dreizler, S., Feldmeier-Krause, A., Husser, T-O., Kacharov, N., Kamann, S., Latour, M., Libralato, M., van de Ven, G., Voggel, K., & Wang, Z. (2024). oMEGACat III. Multi-band photometry and metallicities reveal spatially well-mixed populations within $\omega$ Centauri's half-light radius. The Astrophysical Journal. http://adsabs.harvard.edu/abs/2024arXiv240601688N
Koller, M., Ziegler, B., Ciocan, B. I., Thater, S., Mendel, J. T., Wisnioski, E., Battisti, A. J., Harborne, K. E., Foster, C., Lagos, C., Croom, S. M., Grasha, K., Papaderos, P., Remus, R. S., Sharma, G., Sweet, S. M., Valenzuela, L. M., van de Ven, G., & Zafar, T. (2024). The MAGPI survey: The interdependence of mass, star formation rate, and metallicity in galaxies at z~0.3. Astronomy & Astrophysics. http://adsabs.harvard.edu/abs/2024arXiv240620017K
Scholz-Diaz, L., Martin-Navarro, I., Falcon-Barroso, J., Lyubenova, M., & van de Ven, G. (2024). Baryonic properties of nearby galaxies across the stellar-to-total dynamical mass relation. Nature Astronomy, 8(5), 648-656. https://doi.org/10.1038/s41550-024-02209-8
Kim, T., Gadotti, D. A., Querejeta, M., Pérez, I., Zurita, A., Neumann, J., van de Ven, G., Méndez-Abreu, J., de Lorenzo-Cáceres, A., Sánchez-Blázquez, P., Fragkoudi, F., Martins, L. P., Silva-Lima, L. A., Kim, W-T., & Park, M. (2024). Impacts of bar-driven shear and shocks on star formation. The Astrophysical Journal. http://adsabs.harvard.edu/abs/2024arXiv240500107K
Häberle, M., Neumayer, N., Bellini, A., Libralato, M., Clontz, C., Seth, A. C., Nitschai, M. S., Kamann, S., Alfaro-Cuello, M., Anderson, J., Dreizler, S., Feldmeier-Krause, A., Kacharov, N., Latour, M., Milone, A., Pechetti, R., van de Ven, G., & Voggel, K. (2024). oMEGACat II -- Photometry and proper motions for 1.4 million stars in Omega Centauri and its rotation in the plane of the sky. The Astrophysical Journal. http://adsabs.harvard.edu/abs/2024arXiv240403722H
Ding, Y., Zhu, L., Pillepich, A., van de Ven, G., Iodice, E., Corsini, E. M., & Pinna, F. (2024). The effects of environment on galaxies' dynamical structures: From simulations to observations. Astronomy & Astrophysics. http://adsabs.harvard.edu/abs/2024arXiv240401541D
List, F., Hahn, O., & Rampf, C. (2024). Starting Cosmological Simulations from the Big Bang. Physical Review Letters, 132(13), [131003]. https://doi.org/10.1103/PhysRevLett.132.131003
Mainieri, Mainieri, V., Anderson, R. I., Brinchmann, J., Ellis, R. S., Hill, V., Kneib, J-P., Bacon, R., Randich, S., Leaman, R., Miret-Roig, N., & Ziegler, B. (2024). The Wide-field Spectroscopic Telescope (WST) Science White Paper.
Pechetti, R., Kamann, S., Krajnovic, D., Seth, A., van de Ven, G., Neumayer, N., Dreizler, S., Weilbacher, P. M., Martens, S., & Wragg, F. (2024). ω Centauri: A MUSE discovery of a counter-rotating core. Monthly Notices of the Royal Astronomical Society, 528(3), 4941-4957. https://doi.org/10.1093/mnras/stae294
Moór, A., Ábrahám, P., Su, K. Y. L., Henning, T., Marino, S., Chen, L., Kóspál, Á., Pawellek, N., Varga, J., & Vida, K. (2024). Abundant sub-micron grains revealed in newly discovered extreme debris discs. MNRAS, 528(3), 4528-4546. https://doi.org/10.1093/mnras/stae155
Cahlon, S., Zucker, C., Goodman, A., Lada, C., & Alves, J. (2024). A Parsec-Scale Catalog of Molecular Clouds in the Solar Neighborhood Based on 3D Dust Mapping: Implications for the Mass-Size Relation. The Astrophysical Journal, 961(2), [153]. https://doi.org/10.3847/1538-4357/ad0cf8
Taibi, S., Battaglia, G., Roth, M. M., Kamann, S., Iorio, G., Gallart, C., Leaman, R., Skillman, E. D., Kacharov, N., Beasley, M. A., Mancera Piña, P. E., & van de Ven, G. (2024). From gas to stars: MUSEings on the internal evolution of IC 1613. Astronomy & Astrophysics. http://adsabs.harvard.edu/abs/2024arXiv240201631T
Fréour, L., Zocchi, A., van de Ven, G., & Pancino, E. (2024). Investigating black hole accretion disks as potential polluter sources for the formation of enriched stars in globular clusters. Astronomy & Astrophysics. http://adsabs.harvard.edu/abs/2024arXiv240210590F
Ondaro-Mallea, L., Angulo, R. E., Stücker, J., Hahn, O., & White, S. D. M. (2024). Phase-space simulations of prompt cusps: simulating the formation of the first haloes without artificial fragmentation. Monthly Notices of the Royal Astronomical Society, 527(4), 10802-10821. https://doi.org/10.1093/mnras/stad3949
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