Show simple item record

dc.contributor.advisorLy, Chun
dc.contributor.authorMCCORMICK, CAROLINE ELIZABETH
dc.creatorMCCORMICK, CAROLINE ELIZABETH
dc.date.accessioned2022-11-03T19:30:44Z
dc.date.available2022-11-03T19:30:44Z
dc.date.issued2021
dc.identifier.citationMCCORMICK, CAROLINE ELIZABETH. (2021). EVOLUTION OF THE STELLAR MASS–GAS-PHASE METALLICITY RELATION OVER SEVEN GIGAYEARS (Bachelor's thesis, University of Arizona, Tucson, USA).
dc.identifier.urihttp://hdl.handle.net/10150/666676
dc.description.abstractGalaxy evolution can be understood by measuring characteristic properties of the diffuse, ionized gas within galaxies. The gas-phase metallicity (Z), or the chemical content, is one measurement that can tell us about the cumulative star formation in a galaxy while taking into account galactic gas flows. In my Honors thesis, I analyzed ∼4,000 galaxy spectra at redshift (z) ≈ 1 from the DEEP2 Galaxy Redshift Survey to derive metallicities for galaxies. Unlike previous studies, my analyses utilized the electron temperature (Te) method to determine more robust measurements of gas temperature and metallicity. The Te method uses the [Oiii]λ4363 emission line as a direct Te probe. However, because of its weak signal, I used a stacking approach to combine the spectra of hundreds of individual galaxies of similar stellar masses (M) to increase the detection of [Oiii]λ4363. I constructed six robust stellar mass composites: four with [Oiii]λ4363 detections and two with robust non-detections of [Oiii]λ4363. With derived average metallicities for different stellar mass composite spectra, I then constructed a M–Z relation that is ∼0.1 dex lower in metallicity at a given stellar mass than the relation for local galaxies (Andrews & Martini 2013). This result indicates that chemical enrichment in galaxies has increased by ∼0.1 dex in the past seven gigayears of evolution.
dc.language.isoen
dc.publisherThe University of Arizona.
dc.rightsCopyright © is held by the author. Digital access to this material is made possible by the University Libraries, University of Arizona. Further transmission, reproduction or presentation (such as public display or performance) of protected items is prohibited except with permission of the author.
dc.rights.urihttp://rightsstatements.org/vocab/InC/1.0/
dc.titleEVOLUTION OF THE STELLAR MASS–GAS-PHASE METALLICITY RELATION OVER SEVEN GIGAYEARS
dc.typeElectronic thesis
dc.typetext
thesis.degree.grantorUniversity of Arizona
thesis.degree.levelbachelors
thesis.degree.disciplineAstronomy
thesis.degree.disciplineHonors College
thesis.degree.nameB.S.
refterms.dateFOA2022-11-03T19:30:44Z


Files in this item

Thumbnail
Name:
azu_etd_hr_2021_0153_sip1_m.pdf
Size:
589.3Kb
Format:
PDF

This item appears in the following Collection(s)

Show simple item record