Microwave Background Temperature at a Redshift of 6.34 from H2O Absorption
arXiv:2202.00693 · doi:10.1038/s41586-021-04294-5
Abstract
Distortions of the observed cosmic microwave background imprinted by the Sunyaev-Zel'dovich effect toward massive galaxy clusters due to inverse Compton scattering of microwave photons by high-energy electrons provide a direct measurement of the microwave background temperature at redshifts from 0 to 1. Some additional background temperature estimates exist at redshifts from 1.8 to 3.3 based on molecular and atomic line excitation temperatures in quasar absorption line systems, but are model dependent. To date, no deviations from the expected (1+z) scaling behavior of the microwave background temperature have been seen, but the measurements have not extended deeply into the matter-dominated era of the universe at redshifts z>3.3. Here we report the detection of sub-millimeter line absorption from the water molecule against the cosmic microwave background at z=6.34 in a massive starburst galaxy, corresponding to a lookback time of 12.8 Gyr. Radiative pumping of the upper level of the ground-state ortho-H2O(110-101) line due to starburst activity in the dusty galaxy HFLS3 results in a cooling to below the redshifted microwave background temperature, after the transition is initially excited by the microwave background. The strength of this effect implies a microwave background temperature of 16.4-30.2 K (1-sigma range) at z=6.34, which is consistent with a background temperature increase with redshift as expected from the standard CDM cosmology.
16 pages, 6 figures, 1 table (including Methods and Extended Data). The version of record of this article, first published (open access) in Nature, is available online at: http://dx.doi.org/10.1038/s41586-021-04294-5
References in corpus (11)
- A Dust-Obscured Massive Maximum-Starburst Galaxy at a Redshift of 6.34
- Highly-excited CO emission in APM08279+5255 at z=3.9
- Direct Measurement of the Ratio of Carbon Monoxide to Molecular Hydrogen in the Diffuse Interstellar Medium
- Discovery of a Perseus-like cloud in the early Universe: HI-to-H2 transition, carbon monoxide and small dust grains at zabs=2.53 towards the quasar J0000+0048
- CO-dark molecular gas at high redshift: very large H content and high pressure in a low metallicity damped Lyman-alpha system
- Modeling the H2O submillimeter emission in extragalactic sources
- HD/H2 Molecular Clouds in the Early Universe: The Problem of Primordial Deuterium
- HIFI Spectroscopy of submm Lines in Nuclei of Actively Star Forming Galaxies
- Estimation of the CMB temperature from atomic C\,{\sc i} and molecular CO lines in the interstellar medium of early galaxies
- Rise of the Titans: Gas Excitation and Feedback in a Binary Hyper-Luminous Dusty Starburst Galaxy at z~6
- Scale invariant cosmology and CMB temperatures as a function of redshifts
Cited by in corpus (19)
- Continuous wideband microwave-to-optical converter based on room-temperature Rydberg atoms
- Cosmology Intertwined: A Review of the Particle Physics, Astrophysics, and Cosmology Associated with the Cosmological Tensions and Anomalies
- A comprehensive view of the interstellar medium in a quasar host galaxy at z~6.4
- Measuring Hubble constant in an anisotropic extension of CDM model
- The cosmological evolution condition of the Planck constant in the varying speed of light models through adiabatic expansion
- The Rest-Frame Submillimeter Spectrum of High Redshift, Dusty, Star-Forming Galaxies from the SPT-SZ Survey
- Unveiling the warm dense ISM in quasar host galaxies via water vapor emission
- The importance of radiative pumping on the emission of the H_2O submillimeter lines in galaxies
- Dynamical dark energy can amplify the expansion rate of the Universe
- Effects of anisotropy in an anisotropic extension of CDM model
- Cosmological parameters from Planck data in SU(2), their local CDM values, and the modified photon Boltzmann equation
- Cosmological impact of microwave background temperature measurements
- Revealing the hidden cosmic feast: A z=4.3 galaxy group hosting two optically dark, efficiently star-forming galaxies
- Resilience and implications of adiabatic CMB cooling
- Frequency-redshift relation of the Cosmic Microwave Background
- Revisiting the temperature evolution law of the CMB with gaussian processes
- Lorentzian correction for the evolution of the CMB temperature
- Uncovering the absorbed atomic Universe with the [OI]63um line
- Cosmic microwave background temperature cosmography