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The PVLAS experiment: measuring vacuum magnetic birefringence and dichroism with a birefringent Fabry–Perot cavity

机译:PVLAS实验:使用双折射Fabry–Perot腔测量真空磁双折射和二向色性

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Vacuum magnetic birefringence was predicted long time ago and is still lacking a direct experimental confirmation. Several experimental efforts are striving to reach this goal, and the sequence of results promises a success in the next few years. This measurement generally is accompanied by the search for hypothetical light particles that couple to two photons. The PVLAS experiment employs a sensitive polarimeter based on a high finesse Fabry–Perot cavity. In this paper we report on the latest experimental results of this experiment. The data are analysed taking into account the intrinsic birefringence of the dielectric mirrors of the cavity. Besides a new limit on the vacuum magnetic birefringence, the measurements also allow the model-independent exclusion of new regions in the parameter space of axion-like and milli-charged particles. In particular, these last limits hold also for all types of neutrinos, resulting in a laboratory limit on their charge.
机译:真空磁双折射在很久以前就被预测到,但仍缺乏直接的实验确认。为了达到这个目标,已经进行了一些实验性的努力,并且一系列的结果有望在未来几年中取得成功。该测量通常伴随着对耦合到两个光子的假设光粒子的搜索。 PVLAS实验采用了基于高精细Fabry-Perot腔的灵敏旋光仪。在本文中,我们报告了该实验的最新实验结果。考虑到腔的介电镜的固有双折射来分析数据。除了对真空磁双折射有新的限制外,测量还允许在轴突状和毫荷粒子的参数空间中不依赖模型地排除新区域。特别是,这些最后的限制也适用于所有类型的中微子,导致实验室对其电荷进行限制。

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