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Search for weakly interacting sub-eV particles with the OSQAR laser-based experiment: results and perspectives

机译:使用基于OSQAR激光的实验搜索弱相互作用的亚eV粒子:结果和观点

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Recent theoretical and experimental studies highlight the possibility of new fundamental particle physics beyond the Standard Model that can be probed by sub-eV energy experiments. The OSQAR photon regeneration experiment looks for “Light Shining through a Wall” from the quantum oscillation of optical photons into “Weakly Interacting Sub-eV Particles”, like axion or axion-like particles?(ALPs), in a 9?T transverse magnetic field over the unprecedented length of (2 imes 14.3)?m. No excess of events has been detected over the background. The di-photon couplings of possible new light scalar and pseudo-scalar particles can be constrained in the massless limit to be less than (8.0 imes 10^{-8}) ?GeV(^{-1}). These results are very close to the most stringent laboratory constraints obtained for the coupling of ALPs to two photons. Plans for further improving the sensitivity of the OSQAR experiment are presented.
机译:最近的理论和实验研究强调了亚标准电动能量实验可以探究的超越标准模型的新型基本粒子物理学的可能性。 OSQAR光子再生实验在9?T横向磁场中寻找从光子的量子振荡到“弱相互作用的Sub-eV粒子”(如轴突或轴突状粒子?(ALP))的“穿过墙壁的光”。 (2 imes 14.3)?m的空前长度。在后台未检测到过多事件。可以将可能的新光标量和伪标量粒子的双光子耦合限制在无质量限制内,使其小于(8.0 imes 10 ^ {-8})?GeV(^ {-1})。这些结果非常接近将ALP耦合到两个光子所获得的最严格的实验室约束。提出了进一步提高OSQAR实验灵敏度的计划。

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