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首页> 外文期刊>International Journal of Modern Physics, A. Particles and Fields, Gravitation, Cosmology >Cosmic polarization rotation, cosmological models, and the detectability of primordial gravitational waves
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Cosmic polarization rotation, cosmological models, and the detectability of primordial gravitational waves

机译:宇宙极化旋转,宇宙学模型和原始引力波的可探测性

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CMB (Cosmic Microwave Background) polarization observations test many aspects of cosmological models. Effective pseudoscalar-photon interaction(s) would induce a rotation of linear polarization of electromagnetic wave propagating with cosmological distance in various cosmological models. CMB polarization observations are superb tests of these models and have the potential to discover new fundamental physics. Pseudoscalar-photon interaction is proportional to the gradient of the pseudoscalar field. From phenomenological point of view, this gradient could be neutrino number asymmetry, other density current, or a constant vector. In these situations, Lorentz invariance or CPT may effectively be violated. In this paper, we review these results and anticipate what more precise observations can tell us about fundamental physics, inflation, etc. Better accuracy in CMB polarization observation is expected from PLANCK mission to be launched this year. Dedicated CMB polarization observers like B-Pol mission, CMBpol mission and LiteBIRD mission would probe this fundamental issue more deeply in the future. With these sensitivities, cosmic polarization rotations from effective pseudoscalar-photon interaction, Faraday polarization rotations from primordial and large-scale magnetic field, and tensor modes effects would have chances to be detected and distinguished. The subtracted tensor-mode effects are likely due to primordial gravitational waves. We discuss the direct detectability of these primordial gravitational waves using space GW detectors.
机译:CMB(宇宙微波背景)极化观测测试了宇宙学模型的许多方面。有效的伪标量-光子相互作用将在各种宇宙学模型中引起电磁波的线性极化旋转,该线性极化以宇宙距离传播。 CMB极化观测是这些模型的绝佳测试,并有可能发现新的基础物理学。伪标量-光子相互作用与伪标量场的梯度成比例。从现象学的角度来看,该梯度可能是中微子数不对称,其他密度电流或常数向量。在这些情况下,可能会违反洛伦兹不变性或CPT。在本文中,我们将对这些结果进行回顾,并期望更精确的观测结果可以告诉我们有关基本物理学,通货膨胀等方面的信息。预计今年将启动PLANCK任务的CMB极化观测的准确性更高。 B-Pol任务,CMBpol任务和LiteBIRD任务等专用的CMB极化观察员将在未来更深入地探讨这一基本问题。有了这些敏感性,有效伪pseudo量-光子相互作用产生的宇宙极化旋转,原始磁场和大规模磁场产生的法拉第极化旋转以及张量模式效应将有机会被发现和区分。减去的张量模式效应可能是由于原始引力波引起的。我们讨论了使用空间GW探测器对这些原始引力波的直接可检测性。

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