Carena M, Heinemeyer S, Wagner C E, Weiglein G
Fermilab, Box 500, Batavia, Illinois 60510-0500, USA.
Phys Rev Lett. 2001 May 14;86(20):4463-6. doi: 10.1103/PhysRevLett.86.4463.
We study the implications of a scalar bottom quark, with a mass of O (5 GeV), within the minimal supersymmetric standard model. Light sbottoms may naturally appear for large tan(beta) and, depending on the decay modes, may have escaped experimental detection. We show that a light sbottom cannot be ruled out by electroweak precision data and the bound on the lightest CP-even Higgs-boson mass. We infer that a light b scenario requires a relatively light scalar top quark whose mass is typically about the top-quark mass. In this scenario the lightest Higgs boson decays predominantly into b pairs and obeys the mass bound m(h) less, similar 123 GeV.
我们在最小超对称标准模型中研究质量为O(5 GeV)的标量底夸克的影响。对于大的tan(beta),轻底夸克可能自然出现,并且根据衰变模式,可能逃过了实验探测。我们表明,电弱精确数据和最轻CP偶数希格斯玻色子质量的限制并不能排除轻底夸克。我们推断,轻底夸克情形需要一个相对轻的标量顶夸克,其质量通常约为顶夸克质量。在这种情形下,最轻的希格斯玻色子主要衰变成b夸克对,并且满足质量限制m(h) < 约123 GeV。