Institute for Nuclear Theory, University of Washington, Seattle, Washington 98195-1550, USA.
Department of Physics, University of Maryland, College Park, Maryland 20742, USA.
Phys Rev Lett. 2018 Apr 13;120(15):152002. doi: 10.1103/PhysRevLett.120.152002.
Complete flavor decompositions of the matrix elements of the scalar, axial, and tensor currents in the proton, deuteron, diproton, and ^{3}He at SU(3)-symmetric values of the quark masses corresponding to a pion mass m_{π}∼806 MeV are determined using lattice quantum chromodynamics. At the physical quark masses, the scalar interactions constrain mean-field models of nuclei and the low-energy interactions of nuclei with potential dark matter candidates. The axial and tensor interactions of nuclei constrain their spin content, integrated transversity, and the quark contributions to their electric dipole moments. External fields are used to directly access the quark-line connected matrix elements of quark bilinear operators, and a combination of stochastic estimation techniques is used to determine the disconnected sea-quark contributions. The calculated matrix elements differ from, and are typically smaller than, naive single-nucleon estimates. Given the particularly large, O(10%), size of nuclear effects in the scalar matrix elements, contributions from correlated multinucleon effects should be quantified in the analysis of dark matter direct-detection experiments using nuclear targets.
使用格点量子色动力学确定了在夸克质量为 SU(3) 对称的质子、氘核、双质子和 $^{3}$He 中,标量、轴和张量电流的矩阵元的完全味分解,该夸克质量对应于约 806 MeV 的π介子质量 m_π。在物理夸克质量下,标量相互作用限制了原子核的平均场模型以及原子核与潜在暗物质候选体的低能相互作用。核的轴和张量相互作用限制了它们的自旋含量、积分横动和对其电偶极矩的夸克贡献。外部场用于直接访问夸克线连接的夸克双线性算符的矩阵元,并且使用随机估计技术的组合来确定不相连海夸克贡献。计算出的矩阵元与朴素的单核子估计不同,并且通常更小。鉴于标量矩阵元中核效应特别大,O(10%),因此在使用核靶的暗物质直接探测实验分析中,应该量化相关多核子效应的贡献。