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The Atacama Cosmology Telescope: Modeling Bulk Atmospheric Motion

Authors :
Morris, Thomas W.
Bustos, Ricardo
Calabrese, Erminia
Choi, Steve K.
Duivenvoorden, Adriaan J.
Dunkley, Jo
Dünner, Rolando
Gallardo, Patricio A.
Hasselfield, Matthew
Hincks, Adam D.
Mroczkowski, Tony
Naess, Sigurd
Niemack, Michael D.
Page, Lyman A.
Partridge, Bruce
Salatino, Maria
Staggs, Suzanne T.
Treu, Jesse
Wollack, Edward J.
Xu, Zhilei
Publication Year :
2021

Abstract

Fluctuating atmospheric emission is a dominant source of noise for ground-based millimeter-wave observations of the CMB temperature anisotropy at angular scales $\gtrsim 0.5^{\circ}$. We present a model of the atmosphere as a discrete set of emissive turbulent layers that move with respect to the observer with a horizontal wind velocity. After introducing a statistic derived from the time-lag dependent correlation function for detector pairs in an array, referred to as the pair-lag, we use this model to estimate the aggregate angular motion of the atmosphere derived from time-ordered data from the Atacama Cosmology Telescope (ACT). We find that estimates derived from ACT's CMB observations alone agree with those derived from satellite weather data that additionally include a height-dependent horizontal wind velocity and water vapor density. We also explore the dependence of the measured atmospheric noise spectrum on the relative angle between the wind velocity and the telescope scan direction. In particular, we find that varying the scan velocity changes the noise spectrum in a predictable way. Computing the pair-lag statistic opens up new avenues for understanding how atmospheric fluctuations impact measurements of the CMB anisotropy.

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2111.01319
Document Type :
Working Paper
Full Text :
https://doi.org/10.1103/PhysRevD.105.042004