First Evidence of Intrinsic Alignments of Red Galaxies at z > 1: Cross Correlation between CFHTLenS and FastSound Samples

We report the first evidence for intrinsic alignment (IA) of red galaxies at z > 1. We measure the gravitational shear-intrinsic ellipticity cross correlation function at z ∼ 1.3 using galaxy positions from the FastSound spectroscopic survey and galaxy shapes from the Canada France Hawaii telesco...

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Veröffentlicht in:Astrophysical journal. Letters 2022-01, Vol.924 (1), p.L3
Hauptverfasser: Tonegawa, Motonari, Okumura, Teppei
Format: Artikel
Sprache:eng
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Zusammenfassung:We report the first evidence for intrinsic alignment (IA) of red galaxies at z > 1. We measure the gravitational shear-intrinsic ellipticity cross correlation function at z ∼ 1.3 using galaxy positions from the FastSound spectroscopic survey and galaxy shapes from the Canada France Hawaii telescope lensing survey data. Adopting the nonlinear alignment model, we obtain a 2.4 σ level detection of the IA amplitude A LA = 27.48 − 11.54 + 11.53 (and 2.6 σ with A LA = 29.43 − 11.49 + 11.48 when weak lensing contaminations are taken into account), which is larger than the value extrapolated from the constraints obtained at lower redshifts. Our measured IA is translated into a ∼20% contamination of the weak-lensing power spectrum for the red galaxies. This marginal detection of IA for red galaxies at z > 1 motivates the continuing investigation of the nature of IA for weak lensing studies. Furthermore, our result provides the first step to utilize IA measurements in future high- z surveys as a cosmological probe, complementary to galaxy clustering and lensing.
ISSN:2041-8205
2041-8213
DOI:10.3847/2041-8213/ac4246