GA-NIFS: Dissecting The Alchemised: JWST reveals turbulent metal-poor gas fuelling a co-spatial starburst in a complex system at z = 10.17

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) (2026) stag1369

Authors:

Robert G Pascalau, Francesco D’Eugenio, Roberto Maiolino, Qiao Duan, Yuki Isobe, Santiago Arribas, Andrew J Bunker, StĂ©phane Charlot, Michele Perna, Bruno RodrĂ­guez Del Pino, Hannah Übler, Elena Bertola, Torsten Böker, Stefano Carniani, Dan Coe, Giovanni Cresci, Mirko Curti, Tiger YY Hsiao, Lucy R Ivey, Gareth C Jones, Isabella Lamperti, Eleonora Parlanti, Jan Scholtz, Sandro Tacchella, Lorenzo Ulivi, Giacomo Venturi, Joris Witstok, Sandra Zamora

Abstract:

Abstract Recent observations revealed that distant galaxies have bursty star formation histories, regulated by stellar or active galactic nuclei (AGN) feedback and gas inflows. According to theoretical models, feedback preferentially removes metal-rich gas, while subsequent starbursts are triggered by mergers and newly accreted gas that is generally less enriched than the galaxy’s interstellar medium (ISM). Therefore, gas-phase metallicity provides key insights into the baryonic processes shaping early galaxies. We present the first NIRSpec/IFU study of spatially resolved ISM properties in the MACS0647-JD system (z = 10.17). The system consists of two stellar components detected in NIRSpec/IFU and NIRCam photometry. The main component (log (M*/M⊙) = 7.77 ± 0.09; $12+\log \left(\rm O/H\right)=7.89 \pm 0.16$) is more massive and significantly more metal-rich compared to its companion (log (M*/M⊙) = 7.42 ± 0.07; $12+\log \left(\rm O/H\right)=7.47 \pm 0.20$), suggesting an older stellar population and a prolonged chemical enrichment history. We find that the HÎł line emission centroid is spatially offset by ~0.1″ (150 pc in the source plane) from the stellar continuum centroid; the latter coincides with the location of the main stellar component. This offset provides possible evidence of a merger-driven starburst in this system. By comparing the spatial distributions of the metallicity, velocity dispersion, and the burstiness of star formation history, we infer the presence of turbulent, metal-poor gas outside the stellar components. This metal-poor, dynamically unstable gas is likely responsible for the enhanced recent star formation in the north-east region of the system.

JADES: A Prominent Galaxy Overdensity Candidate within the First 500 Myr

The Astrophysical Journal American Astronomical Society 1006:1 (2026) 18

Authors:

Zihao Wu, Daniel J Eisenstein, Benjamin D Johnson, Kevin Hainline, William M Baker, Andrew J Bunker, Alex J Cameron, Emma Curtis-Lake, A Lola Danhaive, Ryan Hausen, Jakob M Helton, Zhiyuan Ji, Tobias J Looser, Roberto Maiolino, Petra Mengistu, Pierluigi Rinaldi, Brant E Robertson, Fengwu Sun, Sandro Tacchella, James AA Trussler, Christina C Williams, Christopher NA Willmer, Joris Witstok

Abstract:

We report a galaxy overdensity candidate at z ≈ 10.5 in the JWST Advanced Deep Extragalactic Survey. This overdensity contains 18 galaxies with consistent photometric redshifts within 8 comoving Mpc in projection. The galaxy number density is 4 times higher than the field expectation, accounting for one-third of comparably bright galaxies and nearly 50% of the total star formation rate (SFR) at 10 < zphot < 12 in the GOODS-S field. Galaxies in the overdensity more frequently have close companions or substructure, with one-third showing such features within 1 kpc at consistent photometric redshifts, implying enhanced interactions. Most galaxies have stellar masses of 0.6–3 × 108 M⊙, half-light radii of ∌200 pc, and SFRs of ∌5 M⊙ yr−1. Their stellar masses and SFRs are slightly higher than those of field galaxies, but remain broadly consistent with typical high-redshift scaling relations. Two compact objects show possible Balmer breaks, suggestive of evolved stellar populations or little red dots. We find tentative evidence for a spatially varying Lyα transmission inferred photometrically, consistent with an emerging ionized bubble. This overdensity provides a rare opportunity for probing the environmental impact on galaxy evolution and the onset of cosmic reionization within the first 500 Myr.

The Stellar Populations and Rest-frame Colors of Star-forming Galaxies at z ≈ 8: Exploring the Impact of Filter Choice and Star Formation History Assumption with JADES

The Astrophysical Journal 1006:1 (2026)

Authors:

Jakob M Helton, Stacey Alberts, George H Rieke, Kevin N Hainline, Zhiyuan Ji, Marcia J Rieke, Benjamin D Johnson, Brant Robertson, Sandro Tacchella, Lily Whitler, William M Baker, Rachana Bhatawdekar, Kristan Boyett, Andrew J Bunker, Phillip A Cargile, Stefano Carniani, Stephane Charlot, Jacopo Chevallard, Emma Curtis-Lake, Eiichi Egami, Daniel J Eisenstein, Ryan Hausen, Jianwei Lyu, Roberto Maiolino, Erica Nelson, Pablo G Pérez-Gonzålez, Pierluigi Rinaldi, Meredith Stone, Fengwu Sun, Christina C Williams, Christopher NA Willmer, Chris Willott, Joris Witstok

Abstract:

Our understanding of the physical properties of star-forming galaxies during the Epoch of Reionization (EoR; at z > 6) suffers from degeneracies among the apparent properties of the stars, nebular gas, and dust. These degeneracies are most prominent with photometry, which has insufficient (1) spectral resolution and (2) rest-frame spectral coverage. We explore ways to break these degeneracies with a sample of N = 22 high-redshift star-forming galaxies at 7 < zphot ≀ 9, using some of the deepest existing imaging from JWST/NIRCam and JWST/MIRI with JADES. Key to this study is the imaging from JWST/MIRI at 7.7 ÎŒm, which provides coverage of the rest-frame I band at the observed redshifts. We infer stellar population properties and rest-frame colors using a variety of filter sets and star formation history (SFH) assumptions to explore the impact of these choices. Evaluating these quantities both with and without the 7.7 ÎŒm data point shows that dense spectral coverage with JWST/NIRCam (eight or more filters, including at least one medium-band at λobs ≈ 4–5 ÎŒm) can compensate for lacking the rest-frame I-band coverage for the vast majority (≈80%) of our sample. Furthermore, these galaxy properties are most consistently determined by assuming the delayed-tau SFH, which provides the smallest offsets and scatters around these offsets when including JWST/MIRI. Within extragalactic surveys like JADES and CEERS, our findings suggest that robust characterization of the stellar population properties and rest-frame colors for typical high-redshift star-forming galaxies (i.e., galaxies with MUV ≈ −20 and ÎČUV ≈ −2) is possible with JWST/NIRCam alone at z ≈ 8.

Constraining Wave Dark Matter with Galactic-Centre Resonant Dynamics

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) (2026) stag1347

Authors:

Yonadav Barry Ginat, Bence Kocsis

Abstract:

Abstract We study the influence of fuzzy-dark-matter cores on the orbits of stars at the Galactic centre. This dark matter candidate condenses into dense, solitonic cores, and, if a super-massive black hole is present at the centre of such a core, its central part forms a ‘gravitational atom’. Here, we calculate the atom’s contribution to the gravitational potential felt by a Galactic-centre star, for a general state of the atom. We study the angular-momentum dynamics this potential induces, and show that it is similar to vector resonant relaxation. Its influence is found to be potentially sufficiently strong that such a dynamical component should be accounted for in Galactic-centre modelling. For the Milky Way, the atom is expected to have some spherical asymmetry, and we use this to derive a stability condition for the disc of young, massive stars at the Galactic centre—if the atom’s mass is too large, then the disc would be destroyed. Thus, the existence of this disc constrains the mass of the particles comprising the solitonic core. We study an example model of the core, where all of the rotation of the core’s inner region is assumed to come from an l = 1 state, and its amplitude is determined by the halo’s spin parameter; such a core is found to be in tension with the stability of the clockwise stellar disc for 4.2 × 10−20 eV ≀ ma ≀ 5.4 × 10−20 eV at 2σ. Other core models could vary the constrained values of ma. These constraints will tighten significantly with future, improved data.

Cosmological dipole in tilted anisotropic universes

Physical Review D American Physical Society (APS) 114:2 (2026) 023526

Authors:

Alicia MartĂ­n, Constantinos Skordis, Deaglan J Bartlett, Harry Desmond, Pedro G Ferreira, Tariq Yasin

Abstract:

There is tentative evidence for a mismatch between the rest frames of matter and the cosmic microwave background, the “quasar dipole anomaly.” We consider such a dipole in tilted anisotropic models, for a range of scenarios and sources: spatial curvature, cosmic heat flux, large scale electromagnetic fields, and a Khronon field. Crucially, we determine the ancillary effects on other cosmological observables in each of these models, and we show that, apart from the case of the Khronon field, it is unlikely that one can obtain a dipole with the amplitude that is being observed unless one considers additional exotica.