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Is observed direct CP violation in B-d - K (+)pi(-) due to new physics? Check standard model prediction of equal violation in B-s - K-pi(+)

机译:是否由于新物理学而在B-d-> K(+)pi(-)中观察到直接CP违反?在B-s-> K-pi(+)中检查等距违反的标准模型预测

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摘要

The recently observed direct CP violation in B-d -> K+ pi(-) has raised suggestions of possible new physics. A robust test of the standard model vs. new physics is its prediction of equal direct CP violation in B-s -> K- pi(+) decay. CPT invariance requires the observed CP violation to arise from the interference between the dominant penguin amplitude and another amplitude with a different weak phase and a different strong phase. The penguin contribution to B-d -> K(+)pi(-) is known to be reduced by a CKM factor in B-s -> K(-)pi(+). Thus the two branching ratios are very different and a different CP violation is expected. But in the standard model a miracle occurs and the interfering tree diagram is enhanced by the same CKM factor that reduces the penguin to give the predicted equality. This miracle is not expected in new physics; thus a search for and measurement of the predicted CP violation in B-s -> K(-)pi(+) decay is a sensitive test for a new physics contribution. A detailed analysis shows this prediction to be robust and insensitive to symmetry breaking effects and possible additional contributions. (c) 2005 Published by Elsevier B.V.
机译:最近在B-d-> K + pi(-)中观察到的直接CP违反提出了可能的新物理学的建议。标准模型相对于新物理的可靠测试是其对B-s-> K- pi(+)衰减中相等的直接CP违反的预测。 CPT不变性要求观察到的CP违规是由主要企鹅振幅与另一个具有不同弱相位和不同强相位的振幅之间的干扰引起的。已知企鹅对B-d-> K(+)pi(-)的贡献会因B-s-> K(-)pi(+)中的CKM系数而降低。因此,两个分支比率非常不同,并且预期会有不同的CP违规。但是在标准模型中,奇迹发生了,并且干扰树图通过相同的CKM因子得到了增强,该因子减少了企鹅以产生预期的相等性。这个奇迹在新物理学中是无法预料的。因此,搜索和测量B-s-> K(-)pi(+)衰变中的预测CP违规是对新物理贡献的敏感测试。详细的分析表明,此预测对对称性破坏效果和可能的其他贡献是可靠且不敏感的。 (c)2005年由Elsevier B.V.

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