论文标题

从Lattice QCD中迈向$ b $ to light Meson衰变的准确形式。

Toward accurate form factors for $B$-to-light meson decay from lattice QCD

论文作者

Parrott, W. G., Bouchard, C., Davies, C. T. H., Hatton, D.

论文摘要

在整个物理范围内,我们介绍了非物理$ b_s \toη_s$ decay的标量和矢量形式的晶格QCD计算的结果。对于晶格QCD和我们对形式的行为的更广泛理解,这都是有用的测试场。使用高度改进的交错夸克(HISQ)动作对$ n_f = 2 + 1 + 1 $ gluon的合奏进行了计算,该合奏与MILC合作生成了改进的Gluon Action和HISQ Sea Quarks。我们使用三个晶格间距以及从魅力到底部的一系列重型夸克群体,全部在HISQ形式主义中。这允许在晶格上的重量夸克质量和晶格间距中外推到矢量矩阵元件的非扰动重态度。我们发现,使用非顾问性QCD $ b $夸克与以前的工作非常吻合,并且在低$ q^2 $下减少了错误,这支持了我们重型HISQ技术的有效性,作为计算涉及重夸克的形式的方法。 SU(3)风味对称性相关的其他衰减的结果比较表明,改变轻子夸克的影响很大,但改变观众夸克的影响很小。我们还将形状形状参数映射为重夸克质量的函数,并与重夸克的有效理论对低后坐力的质量缩放的期望进行比较。这项工作代表了从以前的重度腐烂($ b \ to c $)到数字上更具挑战性的重度衰减的重要步骤。

We present the results of a lattice QCD calculation of the scalar and vector form factors for the unphysical $B_s\toη_s$ decay, over the full physical range of $q^2$. This is a useful testing ground both for lattice QCD and for our wider understanding of the behaviour of form factors. Calculations were performed using the highly improved staggered quark (HISQ) action on $N_f = 2 + 1 + 1$ gluon ensembles generated by the MILC Collaboration with an improved gluon action and HISQ sea quarks. We use three lattice spacings and a range of heavy quark masses from that of charm to bottom, all in the HISQ formalism. This permits an extrapolation in the heavy quark mass and lattice spacing to the physical point and nonperturbative renormalisation of the vector matrix element on the lattice. We find results in good agreement with previous work using nonrelativistic QCD $b$ quarks and with reduced errors at low $q^2$, supporting the effectiveness of our heavy HISQ technique as a method for calculating form factors involving heavy quarks. A comparison with results for other decays related by SU(3) flavour symmetry shows that the impact of changing the light daughter quark is substantial but changing the spectator quark has very little effect. We also map out form factor shape parameters as a function of heavy quark mass and compare to heavy quark effective theory expectations for mass scaling at low and high recoil. This work represents an important step in the progression from previous work on heavy-to-heavy decays ($b\to c$) to the numerically more challenging heavy-to-light decays.

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