Forecasts for decaying dark matter from cross-correlation between line intensity mapping and large scale structures surveys

IF 4.2 2区 物理与天体物理 Q2 PHYSICS, PARTICLES & FIELDS
Jiali Wu, Jun-Qing Xia
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Abstract

Axion-like particles (ALPs) are compelling candidates for dark matter with a broad range of possible masses and coupling strengths. These particles decay into two photons, contributing to cosmic background radiation, which may correlate with large-scale structure (LSS). ALPs with a mass around 1 eV decay into monochromatic photons in the near-infrared spectrum, which can be detected by the upcoming SPHEREx mission using line intensity mapping (LIM) technology. To search for ALP signals in SPHEREx, we calculate the cross angular power spectrum between the intensity maps and LSS probes. We employ several LSS probes, including galaxy clustering and weak lensing surveys conducted by the China Space Station Telescope (CSST), as well as CMB lensing performed by CMB-S4. Using a Fisher analysis, we place constraints on the ALP parameters, with uncertainties of \(\sigma (m_a) = 0.062\) and \(\sigma (g_{a\gamma \gamma }) = 0.19\) from the joint surveys. Our results suggest that the current bounds on \(g_{a\gamma \gamma }\) could be improved by an order of magnitude for ALPs in the mass range around 1 eV. The cross-correlation also allows for detection of star formation lines observed by SPHEREx, providing constraints on the amplitude and redshift exponent of their power spectrum with uncertainties of \(\sigma (A_\text {astro}) = 0.004\) and \(\sigma (\eta _\text {astro}) = 0.004\), respectively. Additionally, we consider intrinsic alignment (IA) as a systematic effect in the weak lensing survey. The IA amplitude and exponent are well constrained by the LIM-WL cross-correlation, yielding results of \(\sigma (A_{\text {IA}}) = 0.016\) and \(\sigma (\eta _{\text {IA}}) = 0.025\), which offer significant improvements over previous works related to CSST.

从线强度绘图与大尺度结构勘测之间的交叉相关性预测衰变暗物质
类轴子粒子(ALPs)是暗物质令人信服的候选者,具有广泛的可能质量和耦合强度。这些粒子衰变成两个光子,产生宇宙背景辐射,这可能与大尺度结构(LSS)有关。质量在1ev左右的ALPs在近红外光谱中衰变成单色光子,这可以被即将到来的SPHEREx任务使用线强度映射(LIM)技术检测到。为了在SPHEREx中搜索ALP信号,我们计算了强度图与LSS探针之间的交叉角功率谱。我们使用了几个LSS探测器,包括由中国空间站望远镜(CSST)进行的星系群集和弱透镜调查,以及由CMB- s4进行的CMB透镜。使用Fisher分析,我们对ALP参数施加约束,联合调查的不确定性为\(\sigma (m_a) = 0.062\)和\(\sigma (g_{a\gamma \gamma }) = 0.19\)。我们的结果表明,在1ev左右的质量范围内,alp在\(g_{a\gamma \gamma }\)上的电流边界可以提高一个数量级。互相关也允许探测由SPHEREx观测到的恒星形成线,提供了对其功率谱的振幅和红移指数的约束,不确定度分别为\(\sigma (A_\text {astro}) = 0.004\)和\(\sigma (\eta _\text {astro}) = 0.004\)。此外,我们认为本征对准(IA)是弱透镜调查中的系统效应。IA振幅和指数很好地受到了LIM-WL相互关系的约束,得到了\(\sigma (A_{\text {IA}}) = 0.016\)和\(\sigma (\eta _{\text {IA}}) = 0.025\)的结果,与以往与CSST相关的工作相比有了显著的改进。
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来源期刊
The European Physical Journal C
The European Physical Journal C 物理-物理:粒子与场物理
CiteScore
8.10
自引率
15.90%
发文量
1008
审稿时长
2-4 weeks
期刊介绍: Experimental Physics I: Accelerator Based High-Energy Physics Hadron and lepton collider physics Lepton-nucleon scattering High-energy nuclear reactions Standard model precision tests Search for new physics beyond the standard model Heavy flavour physics Neutrino properties Particle detector developments Computational methods and analysis tools Experimental Physics II: Astroparticle Physics Dark matter searches High-energy cosmic rays Double beta decay Long baseline neutrino experiments Neutrino astronomy Axions and other weakly interacting light particles Gravitational waves and observational cosmology Particle detector developments Computational methods and analysis tools Theoretical Physics I: Phenomenology of the Standard Model and Beyond Electroweak interactions Quantum chromo dynamics Heavy quark physics and quark flavour mixing Neutrino physics Phenomenology of astro- and cosmoparticle physics Meson spectroscopy and non-perturbative QCD Low-energy effective field theories Lattice field theory High temperature QCD and heavy ion physics Phenomenology of supersymmetric extensions of the SM Phenomenology of non-supersymmetric extensions of the SM Model building and alternative models of electroweak symmetry breaking Flavour physics beyond the SM Computational algorithms and tools...etc.
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