A Measurement of the CMB Temperature Power Spectrum and Constraints on Cosmology from the SPT-3G 2018 TT/TE/EE Data Set
L. Balkenhol, D. Dutcher, A. Spurio Mancini, A. Doussot, K. Benabed,, S. Galli, P. A. R. Ade, A. J. Anderson, B. Ansarinejad, M. Archipley, A. N., Bender, B. A. Benson, F. Bianchini, L. E. Bleem, F. R. Bouchet, L. Bryant, E., Camphuis, J. E. Carlstrom, T. W. Cecil, C. L. Chang

TL;DR
This paper presents a comprehensive analysis of the CMB temperature and polarization power spectra from SPT-3G 2018 data, providing precise cosmological constraints consistent with previous measurements and exploring extensions to the standard model.
Contribution
First joint analysis of SPT-3G 2018 temperature and polarization spectra, offering robust cosmological constraints and testing extensions to the $\\Lambda$CDM model.
Findings
Consistent with $\\Lambda$CDM with 15% fit probability
Hubble constant constrained to 68.3 ± 1.5 km/s/Mpc
Structure growth parameter S_8 constrained to 0.797 ± 0.042
Abstract
We present a sample-variance-limited measurement of the temperature power spectrum () of the cosmic microwave background (CMB) using observations of a field made by SPT-3G in 2018. We report multifrequency power spectrum measurements at 95, 150, and 220GHz covering the angular multipole range . We combine this measurement with the published polarization power spectrum measurements from the 2018 observing season and update their associated covariance matrix to complete the SPT-3G 2018 data set. This is the first analysis to present cosmological constraints from SPT , , and power spectrum measurements jointly. We blind the cosmological results and subject the data set to a series of consistency tests at the power spectrum and parameter level. We find excellent agreement between frequencies and spectrum…
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