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Cross-correlation Techniques to Mitigate the Interloper Contamination for Line Intensity Mapping Experiments
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Cross-correlation Techniques to Mitigate the Interloper Contamination for Line Intensity Mapping Experiments
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Line intensity mapping (LIM) serves as a potent probe in astrophysics, relying on the statistical analysis of integrated spectral line emissions originating from distant star-forming galaxies. While LIM observations hold the promise of achieving a broad spectrum of scientific objectives, a significant hurdle for future experiments lies in distinguishing the targeted spectral line emitted at a specific redshift from undesired line emissions originating at different redshifts. The presence of these interloping lines poses a challenge to the accuracy of cosmological analyses. In this study, we introduce a novel approach to quantify line-line cross-correlations (LIM-LLX), enabling us to investigate the true signal amidst instrumental noise and interloping emissions. For example, at a redshift of approximately $z\sim3.7$, we observed that the measured auto-power spectrum of [CII] exhibited substantial bias, from interloping line emission. However, cross-correlating [CII] with CO(6-5) lines using a FYST-like experiment yielded a promising result, with a Signal-to-noise ratio (SNR) of $\sim 10$. This measurement is notably unbiased. Additionally, we explore the extensive capabilities of cross-correlation by leveraging various CO transitions to probe the tomographic Universe at lower redshifts through LIM-LLX. We further demonstrate that incorporating low-frequency channels, such as 90 GHz and 150 GHz, into FYST's EoR-Spec-like experiment can maximize the potential for cross-correlation studies, effectively reducing the bias introduced by instrumental noise and interlopers.
Forward citations
Cited by 3 Pith papers
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First full-shape joint analysis of the two- and three-point correlation functions on real data: $\Lambda$CDM cosmological constraints from BOSS DR12
First joint 2PCF+3PCF full-shape analysis on BOSS DR12 real data improves σ(h) by ~29%, σ(ω_cdm) by ~10%, and σ(A_s) by ~24% over 2PCF alone via extra BAO information in 3PCF triangles.
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Interlopers as Signal in Line Intensity Mapping
Jointly modeling LIM interlopers as projected multi-redshift tracers often beats cleaning for Ω_m h² and BAO distances, yielding a transverse BAO ladder over 0.7≲z≲5.8 in SPHEREx/FYST forecasts.
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Spectral Data-cube Cleaning for CCAT Deep Spectroscopic Survey. I. Effect of correlated noise and filtering on the power spectrum
The EoR-Spec Filter-and-Bin pipeline suppresses atmospheric 1/f noise by about four orders of magnitude and recovers the [CII]+CO power spectrum above k ~ 0.1 Mpc^-1, but suppresses large-scale modes below 20% transfe...
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