arXivDaily arXiv每日学术速递 周一至周五更新
arXiv周末暂无论文更新,休息一下吧,周末愉快~~
arXiv 2609.21839astro-ph.CO

最大尺度上的内禀潮汐剪切:DESI DR2中的星系多重体排列

Intrinsic Tidal Shear at the Largest Scales: Galaxy Multiplet Alignment in DESI DR2

C. Lamman, J. Aguilar, S. Ahlen, A. Aviles, D. Bianchi, D. Brooks, A. Carnero Rosell, F. J. Castander, T. Claybaugh, A. de la Macorra, D. Eisenstein, A. Font-Ri… 展开作者

C. Lamman, J. Aguilar, S. Ahlen, A. Aviles, D. Bianchi, D. Brooks, A. Carnero Rosell, F. J. Castander, T. Claybaugh, A. de la Macorra, D. Eisenstein, A. Font-Ribera, J. E. Forero-Romero, C. Garcia-Quintero, E. Gaztañaga, G. Gutierrez, K. Honscheid, M. Ishak, S. Juneau, T. Karim, D. Kirkby, O. Lahav, M. Landriau, M. E. Levi, M. Manera, A. Meisner, R. Miquel, S. Nadathur, H. E. Noriega, N. Palanque-Delabrouille, W. J. Percival, M. Perdomo, F. Prada, I. Pérez-Ràfols, C. Ravoux, A. J. Ross, G. Rossi, R. Ruggeri, L. Samushia, E. Sanchez, C. Saulder, D. Schlegel, M. Schubnell, J. Silber, M. Siudek, G. Tarlé, R. Vaisakh, B. A. Weaver

首次发表
浏览论文内容

中文总结 AI 辅助

本研究利用DESI DR2数据,通过星系多重体排列测量内禀潮汐剪切,在超过200 h⁻¹Mpc尺度上探测到显著排列,并验证了NLA模型,扩展了IA探测的最大尺度。

中文摘要 AI 辅助

我们利用DESI数据发布2中星系位置所示踪的大尺度潮汐场,测量了星系多重体的内禀排列(IA)。使用覆盖$0.01 < z < 1.6$的BGS、LRG和ELG样本,我们优化了每个样本中定义多重体的尺度以最小化测量噪声。我们在所有样本中测量了超过100 $h^{-1}$Mpc尺度上的多重体潮汐排列$\nmathcal{E}_+$,并探测到超过200 $h^{-1}$Mpc的排列,在最高LRG红移区间中显著性高达4.5$\nsigma$。我们还展示了多重体形状-形状自相关$\nmathcal{E}_{++}$,该量独立于星系偏袒,并为我们的NLA(非线性排列)模型提供了一致性检验。我们在投影估计量中未探测到重子声学振荡特征。我们还发现多重体的排列强度与红移和星系形态相关。多重体排列提供了直接获取所有星系样本中潮汐剪切场的途径,即使在单个星系排列无法实现的情况下也是如此,并将IA探测扩展到迄今所探测的最大尺度。

英文摘要

We measure the intrinsic alignment (IA) of galaxy multiplets with the large-scale tidal field traced by galaxy positions in DESI Data Release 2. Using the BGS, LRG, and ELG samples spanning $0.01 < z < 1.6$, we optimize the scales which define multiplets in each sample to minimize measurement noise. We measure multiplet tidal alignment $\mathcal{E}_+$ on scales beyond 100 $h^{-1}$Mpc in all samples, and detect alignment over 200 $h^{-1}$Mpc, up to 4.5$σ$ in the highest LRG redshift bin. We additionally present the multiplet shape-shape autocorrelation, $\mathcal{E}_{++}$, which is independent of galaxy bias and provides a consistency check of our NLA (nonlinear alignment) model. We do not detect a baryon acoustic feature in the projected estimator. We also find the alignment strength of multiplets is correlated with redshift and galaxy morphology. Multiplet alignment offers direct access to the tidal shear field in all galaxy samples, even where individual galaxy alignment cannot, and extends IA detection to the largest scales yet probed.

补充信息

↑