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利用射电脉冲星检验暗物质的自由落体普遍性。

Testing the Universality of Free Fall towards Dark Matter with Radio Pulsars.

机构信息

Max-Planck-Institut für Radioastronomie, Auf dem Hügel 69, D-53121 Bonn, Germany.

Jodrell Bank Centre for Astrophysics, The University of Manchester, Oxford Road, Manchester M13 9PL, United Kingdom.

出版信息

Phys Rev Lett. 2018 Jun 15;120(24):241104. doi: 10.1103/PhysRevLett.120.241104.

Abstract

The violation of the weak equivalence principle (EP) in the gravitational field of Earth, described by the Eötvös parameter η_{⊕}, was recently constrained to the level |η_{⊕}|≲10^{-14} by the MICROSCOPE space mission. The Eötvös parameter η_{DM}, pertaining to the differential couplings of dark matter (DM) and ordinary matter, was only tested to the level |η_{DM}|≲10^{-5} by the Eöt-Wash group and lunar laser ranging. This test is limited by the EP-violating driving force in the solar neighborhood that is determined by the galactic distribution of DM. Here we propose a novel celestial experiment using the orbital dynamics from radio timing of binary pulsars, and obtain a competing limit on η_{DM} from a neutron-star-white-dwarf (NS-WD) system, PSR J1713+0747. The result benefits from the large material difference between the NS and the WD and the large gravitational binding energy of the NS. If we can discover a binary pulsar within ∼10  pc of the galactic center, where the driving force is much larger in the expected DM spike, precision timing will improve the test of the universality of free fall towards DM and constrain various proposed couplings of DM to the standard model by several orders of magnitude. Such a test probes the hypothesis that gravity is the only long-range interaction between DM and ordinary matter.

摘要

地球引力场中弱等效原理(EP)的违反,由 Eötvös 参数 η_{⊕} 描述,最近通过 MICROSCOPE 空间任务被约束在 |η_{⊕}|≲10^{-14} 的水平。Eöt-Wash 组和月球激光测距仪仅将 Eötvös 参数 η_{DM}(与暗物质(DM)和普通物质的差分耦合有关)测试到 |η_{DM}|≲10^{-5} 的水平。这种测试受到 DM 银河分布决定的太阳附近 EP 违反驱动力的限制。在这里,我们提出了一种使用双星脉冲星射电计时轨道动力学的新型天体实验,并从中子星-白矮星(NS-WD)系统 PSR J1713+0747 获得了对 η_{DM} 的竞争限制。该结果受益于 NS 和 WD 之间的巨大物质差异以及 NS 的巨大引力束缚能。如果我们能在预期 DM 峰中驱动力大得多的银河系中心附近发现一颗距离约为 10 pc 的双星脉冲星,那么精确计时将改善对 DM 自由落体普遍性的测试,并通过几个数量级约束各种对 DM 到标准模型的提议耦合。这种测试探测了这样一种假设,即引力是 DM 和普通物质之间唯一的长程相互作用。

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