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首页> 外文期刊>The European Physical Journal, A. Hadrons and Nuclei >Three particles in a finite volume: The breakdown of spherical symmetry
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Three particles in a finite volume: The breakdown of spherical symmetry

机译:有限体积中的三个粒子:球对称性的分解

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Lattice simulations of light nuclei necessarily take place in finite volumes, thus affecting their infrared properties. These effects can be addressed in a model-independent manner using Effective Field Theories. We study the model case of three identical bosons (mass m) with resonant two-body interactions in a cubic box with periodic boundary conditions, which can also be generalized to the three-nucleon system in a straightforward manner. Our results allow for the removal of finite-volume effects from lattice results as well as the determination of infinite-volume scattering parameters from the volume dependence of the spectrum. We study the volume dependence of several states below the break-up threshold, spanning one order of magnitude in the binding energy in the infinite volume, for box side lengths L between the two-body scattering length a and L = 0.25a. For example, a state with a three-body energy of ?3/(ma~2) in the infinite volume has been shifted to ?10/(ma~2) at L = a. Special emphasis is put on the consequences of the breakdown of spherical symmetry and several ways to perturbatively treat the ensuing partial-wave admixtures. We find their contributions to be on the sub-percent level compared to the strong volume dependence of the S-wave component. For shallow bound states, we find a transition to boson-diboson scattering behavior when decreasing the size of the finite volume.
机译:光核的晶格模拟必须在有限的体积内进行,从而影响其红外特性。可以使用有效场论以模型独立的方式解决这些影响。我们研究了具有周期性边界条件的立方盒中具有共振两体相互作用的三个相同玻色子(质量m)的模型情况,也可以以简单的方式将其推广到三核子系统。我们的结果可以消除晶格结果中的有限体积效应,也可以根据光谱的体积依赖性确定无限体积的散射参数。对于两体散射长度a与L = 0.25a之间的盒边长度L,我们研究了低于分解阈值的几种状态的体积依赖性,跨越了无限大体积中的结合能一个数量级。例如,在无穷大的体积中具有三体能量φ3/(ma〜2)的状态在L = a时已变为φ10/(ma〜2)。特别强调球形对称性破坏的后果以及微扰处理随后的部分波混和物的几种方法。与S波分量的强体积依赖性相比,我们发现它们的贡献处于亚百分比水平。对于浅边界状态,当减小有限体积的大小时,我们发现了向玻色-狄博森散射行为的过渡。

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