Deep Imaging Meets Motion: Complementing Stream Photometry Through Planetary Nebula Kinematics
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arXiv
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| Autori principali: | , , |
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| Natura: | Preprint |
| Pubblicazione: |
2026
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| _version_ | 1866913036585926656 |
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| author | Valenzuela, Lucas M. Stoiber, Johannes Remus, Rhea-Silvia |
| author_facet | Valenzuela, Lucas M. Stoiber, Johannes Remus, Rhea-Silvia |
| contents | The combination of deep imaging data and kinematic measurements in galaxy outskirts promises to reveal extensive insights into the structure and history of individual galaxies. From a census of tidal features around galaxies from the Magneticum simulation, we disentangle the dynamics for a selected stellar stream from the underlying halo by identifying the stream progenitor galaxy. While these dynamics are challenging to measure observationally, we show that they are effectively obtained through planetary nebulae (PNe) as tracers, which we model in the simulation using the PN framework PICS (PNe In Cosmological Simulations). We find that the PNe in the brightest 1.5 mag of their luminosity function are sufficient to recover the underlying stellar dynamics of the massive stream. We thereby establish PNe as an attractive alternative to expensive deep IFU observations, where combining low-surface-brightness observations and PN dynamical measurements will enhance our ability to constrain the gravitational potential of galaxies. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2604_14272 |
| institution | arXiv |
| publishDate | 2026 |
| record_format | arxiv |
| spellingShingle | Deep Imaging Meets Motion: Complementing Stream Photometry Through Planetary Nebula Kinematics Valenzuela, Lucas M. Stoiber, Johannes Remus, Rhea-Silvia Astrophysics of Galaxies The combination of deep imaging data and kinematic measurements in galaxy outskirts promises to reveal extensive insights into the structure and history of individual galaxies. From a census of tidal features around galaxies from the Magneticum simulation, we disentangle the dynamics for a selected stellar stream from the underlying halo by identifying the stream progenitor galaxy. While these dynamics are challenging to measure observationally, we show that they are effectively obtained through planetary nebulae (PNe) as tracers, which we model in the simulation using the PN framework PICS (PNe In Cosmological Simulations). We find that the PNe in the brightest 1.5 mag of their luminosity function are sufficient to recover the underlying stellar dynamics of the massive stream. We thereby establish PNe as an attractive alternative to expensive deep IFU observations, where combining low-surface-brightness observations and PN dynamical measurements will enhance our ability to constrain the gravitational potential of galaxies. |
| title | Deep Imaging Meets Motion: Complementing Stream Photometry Through Planetary Nebula Kinematics |
| topic | Astrophysics of Galaxies |
| url | https://arxiv.org/abs/2604.14272 |