JWST Reveals a Surprisingly High Fraction of Galaxies Being Spiral-like at $0.5\leq z\leq4$

Fuente: arXiv
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Main Authors: Kuhn, Vicki, Guo, Yicheng, Martin, Alec, Bayless, Julianna, Gates, Ellie, Puleo, AJ
Format: Preprint
Published: 2023
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author Kuhn, Vicki
Guo, Yicheng
Martin, Alec
Bayless, Julianna
Gates, Ellie
Puleo, AJ
author_facet Kuhn, Vicki
Guo, Yicheng
Martin, Alec
Bayless, Julianna
Gates, Ellie
Puleo, AJ
contents Spiral arms are one of the most important features used to classify the morphology of local galaxies. The cosmic epoch when spiral arms first appeared contains essential clues to the evolution of disk galaxies. In this letter, we used James Webb Space Telescope (JWST) images from the Cosmic Evolution Early Release Science Survey to visually identify spiral galaxies with redshift $0.5\leq z\leq4$ and stellar mass $\geq10^{10}\; M_\odot$. Out of 873 galaxies, 216 were found to have a spiral structure. The spiral galaxies in our sample have higher star formation rates (SFRs) and larger sizes than non-spiral galaxies. We found the observed spiral fraction decreases from 48% at $z\sim0.75$ to 8% at $z\sim2.75$. These fractions are higher than the fractions observed with the Hubble Space Telescope (HST). We even detect possible spiral-like features at redshifts $z>3$. We artificially redshifted low redshift galaxies to high redshifts and re-inspected them to evaluate observational effects. By varying the input spiral fraction of the redshifted sample, we found that the input fraction of $\sim35$% matches the observed fraction at $z=2-3$ the best. We are able to rule out spiral fractions being $<20$% (2$σ$) and $<10$% (3$σ$) for real galaxies at $z\sim3$. This fraction is surprisingly high and implies that the formation of spiral arms, as well as disks, was earlier in the universe.
format Preprint
id arxiv_https___arxiv_org_abs_2312_12389
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle JWST Reveals a Surprisingly High Fraction of Galaxies Being Spiral-like at $0.5\leq z\leq4$
Kuhn, Vicki
Guo, Yicheng
Martin, Alec
Bayless, Julianna
Gates, Ellie
Puleo, AJ
Astrophysics of Galaxies
Spiral arms are one of the most important features used to classify the morphology of local galaxies. The cosmic epoch when spiral arms first appeared contains essential clues to the evolution of disk galaxies. In this letter, we used James Webb Space Telescope (JWST) images from the Cosmic Evolution Early Release Science Survey to visually identify spiral galaxies with redshift $0.5\leq z\leq4$ and stellar mass $\geq10^{10}\; M_\odot$. Out of 873 galaxies, 216 were found to have a spiral structure. The spiral galaxies in our sample have higher star formation rates (SFRs) and larger sizes than non-spiral galaxies. We found the observed spiral fraction decreases from 48% at $z\sim0.75$ to 8% at $z\sim2.75$. These fractions are higher than the fractions observed with the Hubble Space Telescope (HST). We even detect possible spiral-like features at redshifts $z>3$. We artificially redshifted low redshift galaxies to high redshifts and re-inspected them to evaluate observational effects. By varying the input spiral fraction of the redshifted sample, we found that the input fraction of $\sim35$% matches the observed fraction at $z=2-3$ the best. We are able to rule out spiral fractions being $<20$% (2$σ$) and $<10$% (3$σ$) for real galaxies at $z\sim3$. This fraction is surprisingly high and implies that the formation of spiral arms, as well as disks, was earlier in the universe.
title JWST Reveals a Surprisingly High Fraction of Galaxies Being Spiral-like at $0.5\leq z\leq4$
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2312.12389