De Sitter Special Relativity as a Possible Reason for Conformal Symmetry and Confinement in QCD

Szymon Lukaszyk
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引用次数: 3

Abstract

Conformal symmetry and color confinement in the infrared regime of QCD are attributed to the global properties of a 4D space-time of a deSitter dS4 geometry which, according to the principle of deSitter special relativity, is viable outside the causal Minkowski light cone, where it reigns over the interactions involving the virtual gluon- and quark degrees of freedom of hadrons. Within this scenario, the conformal symmetry of QCD is a direct consequence of the conformal symmetry of the dS4 space- time, while the color confinement appears as a consequence of the innate charge neutrality of the unique closed space-like geodesic on this space, the three dimensional hypersphere S3, also being the unique dS4 sub-manifold suited as a stage for near rest-frame physics. In further making use of the principles of the mathematical discipline of potential theory, and postulating that fundamental interactions are defined by Green functions of Laplace operators on manifolds, taken here as the dS4 geodesics, a color-dipole potential has been derived on S3 whose magnitude, N_c\alpha_s is the product of the number of colors, N_c, and the strong coupling constant $\alpha_s$ in QCD, and pretty much as the amplitude, Z\alpha, of the Coulomb interaction following from QED. Hadrons now present themselves as light quarkish color-anticolor "dumbbells" in free 4D rotations around their mass centers, equivalent to inertial quantum motions along S3, possibly slightly perturbed by the color-dipole potential from above, attributed to a 4D gluon--anti-gluon "dumbbell" , sufficiently heavy to remain static to a good approximation. A description of the spectra of the unflavored mesons within the above scenario allows to extract the \alpha_s/\pi , value, which we obtain to vary between 0.58 and 0.8, and in accord with data extracted from the spin structure function.
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德西特狭义相对论作为QCD共形对称性和约束的可能原因
QCD红外区域的共形对称和色限归因于deSitter dS4几何的4D时空的全局特性,根据deSitter狭义相对论的原理,它在因果Minkowski光锥之外是可行的,在那里它统治着涉及强子的虚拟胶子和夸克自由度的相互作用。在这种情况下,QCD的共形对称性是dS4时空共形对称性的直接结果,而颜色限制则是该空间上独特的封闭类空间测地线固有电荷中性的结果,三维超球S3也是适合于近静止框架物理的独特dS4子流形。进一步利用势理论的数学原理,并假设基本相互作用是由流形上的拉普拉斯算子的格林函数定义的,这里取为dS4测地线,在S3上推导出了一个颜色偶极子势,其大小N_c \alpha _s是颜色数N_c和QCD中的强耦合常数$\alpha_s$的乘积,与振幅Z \alpha相当。QED之后的库仑相互作用。现在,强子在围绕其质量中心的自由四维旋转中表现为轻夸克色-反色“哑铃”,相当于沿S3的惯性量子运动,可能被上面的彩色偶极子势稍微扰动,归因于四维胶子-反胶子“哑铃”,足够重以保持静态。通过对上述场景下无风味介子光谱的描述,可以提取出\alpha _s/ \pi值,该值在0.58 ~ 0.8之间变化,与从自旋结构函数中提取的数据一致。
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