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In the Standard Model <math>B^0_d-\overline{B^0_d}</math> mixing  is a direct consequence of second order weak interactions. Starting with a <math>B^0_d</math> meson produced at time <math>t</math>=0, the probability, <math>{\mathcal P}</math>, to observe a <math>\overline{B^0_d}</math> decaying at the proper time <math>t</math> can be written, neglecting effects from <math>\mathcal{CP}</math> violation: <math>{\mathcal P}(B^0_d\rightarrow \overline{B^0_d})~= ~\frac{\Gamma_d}{2} e^{- \Gamma_{d} t} [\cosh (\frac{\Delta \Gamma_d}{2} t)~+~\cos (\Delta m_d t) ]</math>.  Here <math>\Gamma_d~=~\frac{\Gamma_d^H~+~\Gamma_d^L}{2}</math>, <math>\Delta \Gamma_d~=~\Gamma_d^H -\Gamma_d^L</math>, and <math>\Delta m_d~=~m^H_d~-~m^L_d</math>, where <math>H</math> and <math>L</math> denote respectively the heavy and light physical states.
 
In the Standard Model <math>B^0_d-\overline{B^0_d}</math> mixing  is a direct consequence of second order weak interactions. Starting with a <math>B^0_d</math> meson produced at time <math>t</math>=0, the probability, <math>{\mathcal P}</math>, to observe a <math>\overline{B^0_d}</math> decaying at the proper time <math>t</math> can be written, neglecting effects from <math>\mathcal{CP}</math> violation: <math>{\mathcal P}(B^0_d\rightarrow \overline{B^0_d})~= ~\frac{\Gamma_d}{2} e^{- \Gamma_{d} t} [\cosh (\frac{\Delta \Gamma_d}{2} t)~+~\cos (\Delta m_d t) ]</math>.  Here <math>\Gamma_d~=~\frac{\Gamma_d^H~+~\Gamma_d^L}{2}</math>, <math>\Delta \Gamma_d~=~\Gamma_d^H -\Gamma_d^L</math>, and <math>\Delta m_d~=~m^H_d~-~m^L_d</math>, where <math>H</math> and <math>L</math> denote respectively the heavy and light physical states.
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Revision as of 11:18, 3 March 2009

This is the LHCb Wiki test page

A further analysis focuses on an exclusive -decay mode, namely , which is one of a number of decays that are interesting for studies of CP violation in the B system.

In the Standard Model mixing is a direct consequence of second order weak interactions. Starting with a meson produced at time =0, the probability, , to observe a decaying at the proper time can be written, neglecting effects from violation: . Here , , and , where and denote respectively the heavy and light physical states.

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