ﻻ يوجد ملخص باللغة العربية
According to the standard model, the Cabibbo-favored (CF) decays are $CP$ conserve at tree level. Observation of any finite $CP$ asymmetry can be received as a signal of new physics. In CF charm meson decays, $ D^0 rightarrow K^- pi^+ $ and $ D^+ rightarrow K_s^0 pi^+ $, the following experimental values for their $CP$ asymmetry are reported, respectively: ($0.3 pm 0.7$) % and ($-0.41 pm 0.09$) %. The value of the later can be attributed to the mixing of $ K^0 $ and $ overline{K^0} $, however, its contribution is about ($-0.332 pm 0.006 $) %. In this paper, we use these experimental results to constrain the unparticle stuff as a new physics which may contribute to these $CP$ asymmetries.
A U-spin relation among four ratios of amplitudes for $D^0 to pi^+K^-$, $K^+pi^-$, $K^+K^-, pi^+pi^-$, including first, second and third order U-spin breaking, has been derived recently with a precision of $10^{-3}$. We study effects of new $|Delta C
We have investigated the effects of unparticles in decays $B to l u$. It is found that the direct CP violation in the decays, which is zero in SM, can show up due to the CP conserving phase intrinsic in unparticle physics. For $l=tau$, the direct CP
We report on a search for direct CP asymmetry in the singly Cabibbo-suppressed decay D+- --> K+ K- pi+- using a data sample of 476 fb-1 accumulated with the BaBar detector running at and just below the Y(4S) resonance. The CP-violating decay rate asy
The phenomenon of mixing in neutral meson systems has now been observed in all flavours, but only in the past year in the D0 system. The standard model anticipated that, for the charm sector, the mixing rate would be small, and also that CP violation
The LHCb Collaboration has recently measured the difference of time-integrated $CP$ asymmetry in $D^{0}rightarrow K^{+}K^{-}$ and $D^{0}rightarrow pi^{+}pi^{-}$ decays, more precisely. The reported value is $ Delta A_{CP}=-0.10 pm 0.08 (text{stat}) p