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Extending the constraint for axion-like particles as resonances at the LHC and laser beam experiments

机译:在LHC和激光束实验中将轴突类粒子的约束扩展为共振

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We study the discovery potential of axion-like particles (ALP), pseudo-scalars weakly coupled to Standard Model fields, at the Large Hadron Collider (LHC). Our focus is on ALPs coupled to the electromagnetic field, which would induce anomalous scattering of light-by-light. This can be directly probed in central exclusive production of photon pairs in ultra-peripheral collisions at the LHC in proton and heavy-ion collisions. We consider non-standard collision modes of the LHC, such as argon-argon collisions atsNN=7TeV and proton-lead collisions atsNN=8.16TeV, to access regions in the parameter space complementary to the ones previously considered for lead-lead and proton-proton collisions. In addition, we show that, using laser beam interactions, we can constrain ALPs as resonant deviations in the refractive index induced by anomalous light-by-light scattering effects. If we combine the aforementioned approaches, ALPs can be probed in a wide range of masses from the eV scale up to the TeV scale.
机译:我们研究了在大型强子对撞机(LHC)上弱耦合到标准模型字段的伪标量的类轴标粒子(ALP)的发现潜力。我们的重点是耦合到电磁场的ALP,这会引起逐光的异常散射。可以直接在质子碰撞和重离子碰撞的大型强子对撞机的超外围碰撞中集中产生光子对。我们考虑了LHC的非标准碰撞模式,例如atsNN = 7TeV的氩-氩碰撞和atsNN = 8.16TeV的质子-铅碰撞,以访问参数空间中与先前考虑的铅-铅和质子-碰撞互补的区域。质子碰撞。此外,我们表明,利用激光束相互作用,我们可以将ALP限制为由异常的逐光散射效应引起的折射率的共振偏差。如果我们结合上述方法,则可以在从eV规模到TeV规模的各种质量范围内探测ALP。

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