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ON COHERENT NEUTRINO AND ANTINEUTRINO SCATTERING OFF NUCLEI

机译:相干中微子和反中微子在核上的散射

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摘要

Neutrino-nucleus vA→vA and antineutrino-nucleus ■A→■A interactions, when the nucleus conserves its integrity, are discussed with coherent (elastic) and incoherent (inelastic) scattering regimes taken into account. In the first regime the nucleus remains in the same quantum state after the scattering and the cross section depends on the quadratic number of nucleons. In the second regime, the nucleus changes its quantum state and the cross section has an essentially linear dependence on the number of nucleons. The coherent and incoherent cross sections are driven by a nuclear nucleon form factor squared |F|~2 term and a (1-|F|~2) term, respectively. One has a smooth transition between the regimes of coherent and incoherent (anti)neutrino-nucleus scattering. Due to the neutral current nature, these elastic and inelastic processes are indistinguishable if the nucleus recoil energy is only observed. One way to separate the coherent signal from the incoherent one is to register γ quanta from deexcitation of the nucleus excited during the incoherent scattering. Another way is to use a very low-energy threshold detector and collect data at very low recoil energies, where the incoherent scattering is vanishingly small. In particular, for (133)~Cs and neutrino energies of 30-50 MeV the incoherent cross section is about 15-20% of the coherent one. Therefore, the COHERENT experiment (with (133)~Cs) has measured the coherent elastic neutrino nucleus scattering (CEvNS) with the inelastic admixture at a level of 15-20%, if the excitation γ quantum escapes its detection.
机译:当核保持其完整性时,讨论了中微子核vA→vA和反中微子核■A→■A的相互作用,并考虑了相干(弹性)和非相干(非弹性)散射机制。在第一种情况下,原子核在散射后仍保持相同的量子态,其横截面取决于核子的二次数。在第二种状态下,原子核改变其量子态,并且横截面与核子的数量基本呈线性关系。相干和不相干的截面分别由平方的核子形状因子| F |〜2项和(1- | F |〜2)项驱动。一个在相干和不相干(反)中微子核散射制度之间有一个平稳的过渡。由于中性电流性质,如果仅观察到原子核的反冲能量,则这些弹性和非弹性过程是无法区分的。一种将相干信号与非相干信号分离的方法是,对在非相干散射过程中激发的核的去激励记录γ量子。另一种方法是使用能量非常低的阈值检测器,并以非常低的反冲能量收集数据,其中非相干散射非常小。特别是对于(133)〜Cs和30-50 MeV的中微子能量,非相干截面约为相干截面的15-20%。因此,如果激发γ量子未能检测到,则用(133)〜Cs的COHERENT实验(非弹性混合物)测量了15-20%的相干弹性中微子核散射(CEvNS)。

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