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Neutron–Mirror-Neutron Oscillation and Neutron Star Cooling
Physical Review Letters ( IF 8.1 ) Pub Date : 2022-08-05 , DOI: 10.1103/physrevlett.129.061103
Itzhak Goldman 1 , Rabindra N Mohapatra 2 , Shmuel Nussinov 3 , Yongchao Zhang 4
Affiliation  

It was pointed out in a recent paper that the observed cooling rate of old, cold neutron stars (NS) can provide an upper limit on the transition rate of neutron to mirror neutron (nn). This limit is so stringent that it would preclude any discovery of nn oscillation in the current round of terrestrial searches for the process. Motivated by this crucially important conclusion, we critically analyze this suggestion and note an interesting new effect present in nearly exact mirror models for nn oscillation, which significantly affects this bound. The new element is the β decay np+e+ν¯e, which creates a cloud of mirror particles n, p, e, and D inside the NS core. The e can “rob” the energy generated by the nn transition via ee scattering enabled by the presence of a (minute) millicharge in mirror particles. This energy is emitted as unobserved mirror photons via fast mirror bremsstrahlung leading to a relaxation of this upper limit.

中文翻译:

中子-镜面-中子振荡和中子星冷却

在最近的一篇论文中指出,观测到的旧的冷中子星(NS)的冷却速率可以为中子向镜像中子的跃迁速率提供一个上限(n-n')。这个限制是如此严格,以至于它会排除任何发现nn'本轮陆地搜索的振荡过程。受这一至关重要的结论的启发,我们批判性地分析了这一建议,并注意到几乎精确的镜像模型中存在的一个有趣的新效应nn'振荡,这会显着影响这个界限。新元素是β衰变n'p'+e'+ν¯e',这会产生一团镜像粒子n',p',e', 和D'NS核心内部。这e'可以“抢夺”由nn'过渡通过e-e'镜面粒子中存在(分钟)毫电荷使散射成为可能。这种能量通过快速反射镜轫致辐射作为未观察到的反射镜光子发射,导致这个上限的放松。
更新日期:2022-08-05
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