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首页> 外文期刊>International Journal of Modern Physics, A. Particles and Fields, Gravitation, Cosmology >Meson/baryon/tetraquark supersymmetry from superconformal algebra and light-front holography
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Meson/baryon/tetraquark supersymmetry from superconformal algebra and light-front holography

机译:超保形代数和光前全息术的介子/重子/四夸克超对称

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摘要

Superconformal algebra leads to remarkable connections between the masses of mesons and baryons of the same parity - supersymmetric relations between the bosonic and fermionic bound states of QCD. Supercharges connect the mesonic eigenstates to their baryonic superpartners, where the mesons have internal angular momentum one unit higher than the baryons: L-M = L-B + 1. The dynamics of the superpartner hadrons also match; for example, the power-law fall-off of the form factors are the same for the mesonic and baryonic superpartners, in agreement with twist counting rules. An effective supersymmetric light-front Hamiltonian for hadrons composed of light quarks can be constructed by embedding superconformal quantum mechanics into AdS space. This procedure also generates a spin-spin interaction between the hadronic constituents. A specific breaking of conformal symmetry inside the graded algebra determines a unique quark-confining light-front potential for light hadrons in agreement with the soft-wall AdS/QCD approach and light-front holography. Only one mass parameter root lambda appears; it sets the confinement mass scale, a universal value for the slope of all Regge trajectories, the nonzero mass of the proton and other hadrons in the chiral limit, as well as the length scale which underlies their structure. The mass for the pion eigenstate vanishes in the chiral limit. When one includes the constituent quark masses using the Feynman-Hellman theorem, the predictions are consistent with the empirical features of the light-quark hadronic spectra. Our analysis can be consistently applied to the excitation spectra of the pi, rho, K, K* and phi meson families as well as to the N, Delta, Lambda, Sigma, Sigma*, Xi and Xi* baryons. We also predict the existence of tetraquarks which are degenerate in mass with baryons with the same angular momentum. The mass-squared of the light hadrons can be expressed in a universal and frame-independent decomposition of contributions from the constituent kinetic energy, the confinement potential, and spin-spin contributions. We also predict features of hadron dynamics, including hadronic light-front wave functions, distribution amplitudes, form factors, valence structure functions and vector meson electroproduction phenomenology. The mass scale root lambda can be connected to the parameter Lambda((MS) over bar) in the QCD running coupling by matching the nonperturbative dynamics, as described by the light-front holographic approach to the perturbative QCD regime. The result is an effective coupling defined at all momenta. The matching of the high and low momentum-transfer regimes determines a scale Q(0) proportional to root lambda which sets the interface between perturbative and nonperturbative hadron dynamics. The use of Q0 to resolve the factorization scale uncertainty for structure functions and distribution amplitudes, in combination with the scheme-independent Principle of Maximal Conformality (PMC) procedure for setting renormalization scales, can greatly improve the precision of perturbative QCD predictions.
机译:超共形代数导致介子质量和重均子重子之间的显着联系-QCD的硼和铁离子束缚态之间的超对称关系。增压将中子本征态连接到重子超级伙伴,其中介子的内部角动量比重子高一个单位:L-M = L-B +1。超级伙伴强子的动力学也匹配;例如,中型和重制超级伙伴的外形尺寸的幂律衰减是相同的,符合扭曲计数规则。可以通过将超共形量子力学嵌入AdS空间来构造有效的由光夸克组成的强子的超对称光前哈密顿量。此过程还会在强子成分之间产生自旋-自旋相互作用。与软壁AdS / QCD方法和光前全息术相吻合,渐变代数内部特定的共形对称性的特定断裂确定了光强子具有独特的夸克约束光前光潜力。仅出现一个质量参数根λ。它设置了限制质量标度,所有Regge轨迹的斜率的通用值,质子和其他强子在手性极限中的非零质量以及构成其结构的长度标度。介子本征态的质量在手性极限内消失。当使用Feynman-Hellman定理将构成的夸克质量包括在内时,这些预测与轻夸克强子光谱的经验特征一致。我们的分析可以一致地应用于pi,rho,K,K *和phi介子族的激发光谱以及N,Delta,Lambda,Sigma,Sigma *,Xi和Xi *重子的激发光谱。我们还预测存在具有相同角动量的重子在质量上退化的四夸克。轻质强子的质量平方可以表示为来自动能,约束势和自旋自旋贡献的通用且独立于帧的分解。我们还预测了强子动力学的特征,包括强子光前波函数,分布幅度,形状因子,价结构函数和矢量介子电生产现象。可以通过匹配非摄动动力学将质量标度根lambda连接到QCD运行耦合中的参数Lambda((bar)(通过bar表示)),如对微扰QCD方案的光前全息方法所描述的。结果是在所有时刻都定义了有效的耦合。高和低动量传递方式的匹配确定了与根λ成比例的比例Q(0),它设置了摄动和非摄动强子动力学之间的界面。使用Q0来解决结构函数和分布幅度的因式分解尺度不确定性,再结合方案的独立于最大保形原理(PMC)程序来设置重归一化尺度,可以大大提高扰动QCD预测的精度。

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