Power spectrum modelling of galaxy and radio intensity maps including observational effects
arXiv:1902.07439 · doi:10.1093/mnras/stz2145
Abstract
Fluctuations in the large-scale structure of the Universe contain significant information about cosmological physics, but are modulated in survey datasets by various observational effects. Building on existing literature, we provide a general treatment of how fluctuation power spectra are modified by a position-dependent selection function, noise, weighting, smoothing, pixelization and discretization. Our work has relevance for the spatial power spectrum analysis of galaxy surveys with spectroscopic or accurate photometric redshifts, and radio intensity-mapping surveys of the sky brightness temperature including generic noise, telescope beams and pixelization. We consider the auto-power spectrum of a field, the cross-power spectrum between two fields and the multipoles of these power spectra with respect to a curved sky, deriving the corresponding power spectrum models, estimators, errors and optimal weights. We note that "FKP weights" for individual tracers do not in general provide the optimal weights when measuring the cross-power spectrum. We validate our models using mock datasets drawn from N-body simulations, and provide the python code we use for these tests at https://github.com/cblakeastro/intensitypower. Our treatment should be useful for modelling and studying cosmological fluctuation fields in observed and simulated datasets.
15 pages, 2 figures, accepted for publication by MNRAS
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- Recovery of 21 cm intensity maps with sparse component separation
- Mitigating contamination in LSS surveys: a comparison of methods
- The foreground transfer function for HI intensity mapping signal reconstruction: MeerKLASS and precision cosmology applications
- The degeneracy between primordial non-Gaussianity and foregrounds in 21cm intensity mapping experiments
- Multipole expansion for HI intensity mapping experiments: simulations and modelling
- Detecting the power spectrum turnover with HI intensity mapping
- Power spectrum multipole expansion for HI intensity mapping experiments: unbiased parameter estimation
- A multi-tracer empirically-driven approach to line-intensity mapping lightcones
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- HI intensity mapping correlation function from UNIT simulations: BAO and observationally induced anisotropy
- Interferometric HI intensity mapping: perturbation theory predictions and foreground removal effects
- Validating galaxy clustering models with Fixed & Paired and Matched-ICs simulations: application to Primordial Non-Gaussianities
- Radio-optical synergies at high redshift to constrain primordial non-Gaussianity
- SIMPLE: Simple Intensity Map Producer for Line Emission
- Unveiling the Universe with Emerging Cosmological Probes
- Baryon acoustic oscillations from HI intensity mapping: the importance of cross-correlations in the monopole and quadrupole
- Removal of interloper contamination to line-intensity maps using correlations with ancillary tracers of the large-scale structure