The THESAN-ZOOM project: Star-formation efficiencies in high-redshift galaxies
The THESAN-ZOOM project: Star-formation efficiencies in high-redshift galaxies
Recent JWST observations hint at unexpectedly intense cosmic star-formation in the early Universe, often attributed to enhanced star-formation efficiencies (SFEs). Here, we analyze the SFE in THESAN-ZOOM, a novel zoom-in radiation-hydrodynamic simulation campaign of high-redshift ($z \gtrsim 3$) galaxies employing a state-of-the-art galaxy formation model resolving the multiphase interstellar medium (ISM). The halo-scale SFE ($\epsilon^{\ast}_{\rm halo}$) - the fraction of baryons accreted by a halo that are converted to stars - follows a double power-law dependence on halo mass, with a mild redshift evolution above $M_{\rm halo} \gtrsim 10^{9.5}\,{\rm M}_{\odot}$. The power-law slope is roughly $1/3$ at large halo masses, consistent with expectations when gas outflows are momentum-driven. At lower masses, the slope is roughly $2/3$ and is more aligned with the energy-driven outflow scenario. $\epsilon^{\ast}_{\rm halo}$ is a factor of $2-3$ larger than commonly assumed in empirical galaxy-formation models at $M_{\rm halo} \lesssim 10^{11}\,{\rm M}_{\odot}$. On galactic (kpc) scales, the Kennicutt-Schmidt (KS) relation of neutral gas is universal in THESAN-ZOOM, following $\Sigma_{\rm SFR} \propto \Sigma_{\rm gas}^2$, indicative of a turbulent energy balance in the ISM maintained by stellar feedback. The rise of $\epsilon^{\ast}_{\rm halo}$ with halo mass can be traced primarily to increasing gas surface densities in massive galaxies, while the underlying KS relation and neutral, star-forming gas fraction remain unchanged. Although the increase in $\epsilon^{\ast}_{\rm halo}$ with redshift is relatively modest, it is sufficient to explain the large observed number density of UV-bright galaxies at $z \gtrsim 12$. However, reproducing the brightest sources at $M_{\rm UV} \lesssim -21$ may require extrapolating the SFE beyond the halo mass range directly covered by THESAN-ZOOM.
Mark Vogelsberger、Oliver Zier、William McClymont、Sandro Tacchella、Lars Hernquist、Enrico Garaldi、Laura Keating、Xuejian Shen、Ewald Puchwein、Josh Borrow、Aaron Smith、Zihao Wang、Rahul Kannan
天文学
Mark Vogelsberger,Oliver Zier,William McClymont,Sandro Tacchella,Lars Hernquist,Enrico Garaldi,Laura Keating,Xuejian Shen,Ewald Puchwein,Josh Borrow,Aaron Smith,Zihao Wang,Rahul Kannan.The THESAN-ZOOM project: Star-formation efficiencies in high-redshift galaxies[EB/OL].(2025-03-03)[2025-05-13].https://arxiv.org/abs/2503.01949.点此复制
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