PAC in DESI. I. Galaxy Stellar Mass Function into the $10^{6}{\rm M}_{\odot}$ Frontier

Fuente: arXiv
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Auteurs principaux: Xu, Kun, Jing, Y. P., Cole, Shaun, Frenk, Carlos S., Bose, Sownak, Elbers, Willem, Wang, Wenting, Wang, Yirong, Moore, Samuel, Aguilar, J., Ahlen, S., Bianchi, D., Brooks, D., Claybaugh, T., de la Macorra, A., Dey, Arjun, Forero-Romero, J. E., Gaztañaga, E., Gontcho, S. Gontcho A, Gutierrez, G., Honscheid, K., Ishak, M., Kisner, T., Koposov, S. E., Landriau, M., Guillou, L. Le, Miquel, R., Moustakas, J., Poppett, C., Prada, F., Pérez-Ràfols, I., Rossi, G., Sanchez, E., Sprayberry, D., Tarlé, G., Weaver, B. A., Zou, H.
Format: Preprint
Publié: 2025
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author Xu, Kun
Jing, Y. P.
Cole, Shaun
Frenk, Carlos S.
Bose, Sownak
Elbers, Willem
Wang, Wenting
Wang, Yirong
Moore, Samuel
Aguilar, J.
Ahlen, S.
Bianchi, D.
Brooks, D.
Claybaugh, T.
de la Macorra, A.
Dey, Arjun
Forero-Romero, J. E.
Gaztañaga, E.
Gontcho, S. Gontcho A
Gutierrez, G.
Honscheid, K.
Ishak, M.
Kisner, T.
Koposov, S. E.
Landriau, M.
Guillou, L. Le
Miquel, R.
Moustakas, J.
Poppett, C.
Prada, F.
Pérez-Ràfols, I.
Rossi, G.
Sanchez, E.
Sprayberry, D.
Tarlé, G.
Weaver, B. A.
Zou, H.
author_facet Xu, Kun
Jing, Y. P.
Cole, Shaun
Frenk, Carlos S.
Bose, Sownak
Elbers, Willem
Wang, Wenting
Wang, Yirong
Moore, Samuel
Aguilar, J.
Ahlen, S.
Bianchi, D.
Brooks, D.
Claybaugh, T.
de la Macorra, A.
Dey, Arjun
Forero-Romero, J. E.
Gaztañaga, E.
Gontcho, S. Gontcho A
Gutierrez, G.
Honscheid, K.
Ishak, M.
Kisner, T.
Koposov, S. E.
Landriau, M.
Guillou, L. Le
Miquel, R.
Moustakas, J.
Poppett, C.
Prada, F.
Pérez-Ràfols, I.
Rossi, G.
Sanchez, E.
Sprayberry, D.
Tarlé, G.
Weaver, B. A.
Zou, H.
contents The Photometric Objects Around Cosmic Webs (PAC) method integrates cosmological photometric and spectroscopic surveys, offering valuable insights into galaxy formation. PAC measures the excess surface density of photometric objects, $\bar{n}_2w_{\rm{p}}$, with specific physical properties around spectroscopic tracers. In this study, we improve the PAC method to make it more rigorous and eliminate the need for redshift bins. We apply the enhanced PAC method to the DESI Y1 BGS Bright spectroscopic sample and the deep DECaLS photometric sample, obtaining $\bar{n}_2w_{\rm{p}}$ measurements across the complete stellar mass range, from $10^{5.3}{\rm M}_{\odot}$ to $10^{11.5}{\rm M}_{\odot}$ for blue galaxies, and from $10^{6.3}{\rm M}_{\odot}$ to $10^{11.9}{\rm M}_{\odot}$ for red galaxies. We combine $\bar{n}_2w_{\rm{p}}$ with $w_{\rm{p}}$ measurements from the BGS sample, which is not necessarily complete in stellar mass. Assuming that galaxy bias is primarily determined by stellar mass and colour, we derive the galaxy stellar mass functions (GSMFs) down to $10^{5.3}{\rm M}_{\odot}$ for blue galaxies and $10^{6.3}{\rm M}_{\odot}$ for red galaxies, while also setting lower limits for smaller masses. The blue and red GSMFs are well described by single and double Schechter functions, respectively, with low-mass end slopes of $α_{\rm{blue}}=-1.54^{+0.02}_{-0.02}$ and $α_{\rm{red}}=-2.50^{+0.08}_{-0.08}$, resulting in the dominance of red galaxies below $10^{7.6}{\rm M}_{\odot}$. Stage-IV cosmological photometric surveys, capable of reaching 2-3 magnitudes deeper than DECaLS, present an opportunity to explore the entire galaxy population in the local universe with PAC. This advancement allows us to address critical questions regarding the nature of dark matter, the physics of reionization, and the formation of dwarf galaxies.
format Preprint
id arxiv_https___arxiv_org_abs_2503_01948
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle PAC in DESI. I. Galaxy Stellar Mass Function into the $10^{6}{\rm M}_{\odot}$ Frontier
Xu, Kun
Jing, Y. P.
Cole, Shaun
Frenk, Carlos S.
Bose, Sownak
Elbers, Willem
Wang, Wenting
Wang, Yirong
Moore, Samuel
Aguilar, J.
Ahlen, S.
Bianchi, D.
Brooks, D.
Claybaugh, T.
de la Macorra, A.
Dey, Arjun
Forero-Romero, J. E.
Gaztañaga, E.
Gontcho, S. Gontcho A
Gutierrez, G.
Honscheid, K.
Ishak, M.
Kisner, T.
Koposov, S. E.
Landriau, M.
Guillou, L. Le
Miquel, R.
Moustakas, J.
Poppett, C.
Prada, F.
Pérez-Ràfols, I.
Rossi, G.
Sanchez, E.
Sprayberry, D.
Tarlé, G.
Weaver, B. A.
Zou, H.
Astrophysics of Galaxies
Cosmology and Nongalactic Astrophysics
The Photometric Objects Around Cosmic Webs (PAC) method integrates cosmological photometric and spectroscopic surveys, offering valuable insights into galaxy formation. PAC measures the excess surface density of photometric objects, $\bar{n}_2w_{\rm{p}}$, with specific physical properties around spectroscopic tracers. In this study, we improve the PAC method to make it more rigorous and eliminate the need for redshift bins. We apply the enhanced PAC method to the DESI Y1 BGS Bright spectroscopic sample and the deep DECaLS photometric sample, obtaining $\bar{n}_2w_{\rm{p}}$ measurements across the complete stellar mass range, from $10^{5.3}{\rm M}_{\odot}$ to $10^{11.5}{\rm M}_{\odot}$ for blue galaxies, and from $10^{6.3}{\rm M}_{\odot}$ to $10^{11.9}{\rm M}_{\odot}$ for red galaxies. We combine $\bar{n}_2w_{\rm{p}}$ with $w_{\rm{p}}$ measurements from the BGS sample, which is not necessarily complete in stellar mass. Assuming that galaxy bias is primarily determined by stellar mass and colour, we derive the galaxy stellar mass functions (GSMFs) down to $10^{5.3}{\rm M}_{\odot}$ for blue galaxies and $10^{6.3}{\rm M}_{\odot}$ for red galaxies, while also setting lower limits for smaller masses. The blue and red GSMFs are well described by single and double Schechter functions, respectively, with low-mass end slopes of $α_{\rm{blue}}=-1.54^{+0.02}_{-0.02}$ and $α_{\rm{red}}=-2.50^{+0.08}_{-0.08}$, resulting in the dominance of red galaxies below $10^{7.6}{\rm M}_{\odot}$. Stage-IV cosmological photometric surveys, capable of reaching 2-3 magnitudes deeper than DECaLS, present an opportunity to explore the entire galaxy population in the local universe with PAC. This advancement allows us to address critical questions regarding the nature of dark matter, the physics of reionization, and the formation of dwarf galaxies.
title PAC in DESI. I. Galaxy Stellar Mass Function into the $10^{6}{\rm M}_{\odot}$ Frontier
topic Astrophysics of Galaxies
Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2503.01948