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A new bound on axion-like particles

机译:轴状颗粒上的新界限

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Axion-like particles (ALPs) and photons can quantum mechanically interconvert when propagating through magnetic fields, and ALP-photon conversion may induce oscillatory features in the spectra of astrophysical sources. We use deep (370 ks), short frame time Chandra observations of the bright nucleus at the centre of the radio galaxy M87 in the Virgo cluster to search for signatures of light ALPs. The absence of substantial irregularities in the X-ray power-law spectrum leads to a new upper limit on the photon-ALP coupling, g_(aγ): using a very conservative model of the cluster magnetic field consistent with Faraday rotation measurements from M87 and M84, we find g_(aγ) < 2.6 × 10~(-12) GeV~(-1) at 95% confidence level for ALP masses ma ≤ 10~(-13) eV. Other consistent magnetic field models lead to stronger limits of gaγ . 1.1-1.5 × 10~(-12) GeV~(-1). These bounds are all stronger than the limit inferred from the absence of a gamma-ray burst from SN1987A, and rule out a substantial fraction of the parameter space accessible to future experiments such as ALPS-II and IAXO.
机译:当通过磁场传播时,轴状颗粒(A1P)和光子可以是量子的机械互连,并且Alp-Photon转换可以在天体物理源的光谱中引起振荡特征。我们使用深度(370 ks),短帧时间Chandra观察在维槽集群中无线电星系M87中心的明亮核的观察,以寻找轻质阿尔卑斯山的签名。 X射线幂 - 法谱中没有大量不规则导致光子-ALP耦合的新上限,G_(Aγ):使用来自M87的法拉第旋转测量的簇磁场的非常保守的模型M84,我们发现G_(Aγ)<2.6×10〜(-12)GEV〜(-1)在ALP质量mA≤10〜(13)EV的95%置信水平下。其他一致的磁场模型导致Gaγ的较强限制。 1.1-1.5×10〜(-12)GEV〜(-1)。这些界限均强于从SN1987a没有伽马射线爆发的限制推断,并排除了未来实验等参数空间的大部分,例如Alps-II和IAXO。

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