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首页> 外文期刊>Physical review, D >Constraints on the kinetic mixing parameter ε2 for the light dark photons from dilepton production in heavy-ion collisions in the few-GeV energy range
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Constraints on the kinetic mixing parameter ε2 for the light dark photons from dilepton production in heavy-ion collisions in the few-GeV energy range

机译:在几种GEV能量范围内从Dilepton生产中的灯珠菌产生的光暗光子的动力学混合参数ε2约束

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The vector U bosons, or so-called “dark photons,” are one of the possible candidates for the dark matter mediators. They are supposed to interact with the standard matter via a “vector portal” due to the U ( 1 ) ? U ( 1 ) ′ symmetry group mixing which might make them visible in particle and heavy-ion experiments. While there is no confirmed observation of dark photons, the detailed analysis of different experimental data allows to estimate the upper limit for the kinetic mixing parameter ε 2 depending on the mass M U of U bosons which is also unknown. In this study we present theoretical constraints on the upper limit of ε 2 ( M U ) in the mass range M U ≤ 0.6 ? ? GeV from the comparison of the calculated dilepton spectra with the experimental data from the HADES collaboration at SIS18 energies where the dark photons are not observed. Our analysis is based on the microscopic Parton-Hadron-String Dynamics (PHSD) transport approach which reproduces well the measured dilepton spectra in p + p , p + A and A + A collisions. Additionally to the different dilepton channels originating from interactions and decays of ordinary matter particles (mesons and baryons), we incorporate the decay of hypothetical U bosons to dileptons, U → e + e ? , where the U bosons themselves are produced by the Dalitz decay of pions π 0 → γ U , η mesons η → γ U and Delta resonances Δ → N U . Our analysis can help to estimate the requested accuracy for future experimental searches of “light” dark photons by dilepton experiments.
机译:矢量U玻色子,或所谓的“暗光子”是暗物质介质的可能候选者之一。他们应该通过U(1)的“向量门户”与标准物质进行互动? U(1)'对称组混合,其可能使它们在颗粒和重离子实验中可见。虽然没有确认的暗光子观察暗光子,但不同实验数据的详细分析允许取决于U未知的U孔的质量m u,估计动力学混合参数ε2的上限。在这项研究中,我们在质量范围M≤0.6的质量范围内呈现对ε2(m u)的上限的理论限制。还GEV从计算的Dilepton光谱与来自SIS18能量的实验数据的实验数据,在没有观察到深色光子的能量。我们的分析基于微观Parton-HOTRON-String动态(PHSD)传输方法,其在P + P,P + A和A +碰撞中再现测量的Dilepton光谱。另外,源自普通物质颗粒的相互作用和衰变的不同的Dilepton频道(偏斯索和重组),我们将假设的U骨折的衰减纳入普雷斯顿,U→E + E? ,其中U玻色子本身是由π0→γu,η畸形η→γu和δ的共振Δ→n u的dalitz衰减产生的。我们的分析可以帮助估计Dilepton实验“轻”深色光子的未来实验搜索所要求的准确性。

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