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New, Efficient and Clean Strategies to Explore CP Violation Through Neutral B Decays

We point out that decays of the kind $B_d\to D_\pm K_{S(L)}$ and $B_s\to D_\pm\eta^{(')},D_\pm\phi, ...$, where $D_+$ and $D_-$ denote the CP-even and CP-odd eigenstates of the neutral D-meson system, respectively, provide very efficient, theoretically clean determinations of the angle $\gamma$...

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Autor principal: Fleischer, Robert
Lenguaje:eng
Publicado: 2003
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0370-2693(03)00582-3
http://cds.cern.ch/record/603143
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author Fleischer, Robert
author_facet Fleischer, Robert
author_sort Fleischer, Robert
collection CERN
description We point out that decays of the kind $B_d\to D_\pm K_{S(L)}$ and $B_s\to D_\pm\eta^{(')},D_\pm\phi, ...$, where $D_+$ and $D_-$ denote the CP-even and CP-odd eigenstates of the neutral D-meson system, respectively, provide very efficient, theoretically clean determinations of the angle $\gamma$ of the unitarity triangle. In this new strategy, we use the $B^0_q$--$\bar{B^0_q}$ ($q\in\{d,s\}$) mixing phase $\phi_q$ as an input, and employ only ``untagged'' and mixing-induced CP-violating observables, which satisfy a very simple relation, allowing us to determine $\tan\gamma$. Using a plausible dynamical assumption, $\gamma$ can be fixed in an essentially unambiguous manner. The corresponding formalism can also be applied to $B_d\to D_\pm\pi^0,D_\pm\rho^0, >...$ and $B_s\to D_\pm K_{S(L)}$ decays. Although these modes appear less attractive for the extraction of $\gamma$, they provide interesting determinations of $\sin\phi_q$. In comparison with the conventional $B_d\to J/\psi K_{S(L)}$ and $B_s\to J/\psi\phi$ methods, these extractions do not suffer from any penguin uncertainties, and are theoretically cleaner by one order of magnitude.
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spelling cern-6031432023-03-14T18:42:38Zdoi:10.1016/S0370-2693(03)00582-3http://cds.cern.ch/record/603143engFleischer, RobertNew, Efficient and Clean Strategies to Explore CP Violation Through Neutral B DecaysParticle Physics - PhenomenologyWe point out that decays of the kind $B_d\to D_\pm K_{S(L)}$ and $B_s\to D_\pm\eta^{(')},D_\pm\phi, ...$, where $D_+$ and $D_-$ denote the CP-even and CP-odd eigenstates of the neutral D-meson system, respectively, provide very efficient, theoretically clean determinations of the angle $\gamma$ of the unitarity triangle. In this new strategy, we use the $B^0_q$--$\bar{B^0_q}$ ($q\in\{d,s\}$) mixing phase $\phi_q$ as an input, and employ only ``untagged'' and mixing-induced CP-violating observables, which satisfy a very simple relation, allowing us to determine $\tan\gamma$. Using a plausible dynamical assumption, $\gamma$ can be fixed in an essentially unambiguous manner. The corresponding formalism can also be applied to $B_d\to D_\pm\pi^0,D_\pm\rho^0, >...$ and $B_s\to D_\pm K_{S(L)}$ decays. Although these modes appear less attractive for the extraction of $\gamma$, they provide interesting determinations of $\sin\phi_q$. In comparison with the conventional $B_d\to J/\psi K_{S(L)}$ and $B_s\to J/\psi\phi$ methods, these extractions do not suffer from any penguin uncertainties, and are theoretically cleaner by one order of magnitude.We point out that decays of the kind $B_d\to D_\pm K_{S(L)}$ and $B_s\to D_\pm\eta^{(')},D_\pm\phi, ...$, where $D_+$ and $D_-$ denote the CP-even and CP-odd eigenstates of the neutral D-meson system, respectively, provide very efficient, theoretically clean determinations of the angle $\gamma$ of the unitarity triangle. In this new strategy, we use the $B^0_q$--$\bar{B^0_q}$ ($q\in\{d,s\}$) mixing phase $\phi_q$ as an input, and employ only ``untagged'' and mixing-induced CP-violating observables, which satisfy a very simple relation, allowing us to determine $\tan\gamma$. Using a plausible dynamical assumption, $\gamma$ can be fixed in an essentially unambiguous manner. The corresponding formalism can also be applied to $B_d\to D_\pm\pi^0,D_\pm\rho^0, >...$ and $B_s\to D_\pm K_{S(L)}$ decays. Although these modes appear less attractive for the extraction of $\gamma$, they provide interesting determinations of $\sin\phi_q$. In comparison with the conventional $B_d\to J/\psi K_{S(L)}$ and $B_s\to J/\psi\phi$ methods, these extractions do not suffer from any penguin uncertainties, and are theoretically cleaner by one order of magnitude.We point out that decays of the kind B d → D ± K S(L) and B s → D ± η (′) , D ± φ ,…, where D + and D − denote the CP-even and CP-odd eigenstates of the neutral D -meson system, respectively, provide very efficient, theoretically clean determinations of the angle γ of the unitarity triangle. In this new strategy, we use the B 0 q – B 0 q ( q ∈{ d , s }) mixing phase φ q as an input, and employ only “untagged” and mixing-induced CP-violating observables, which satisfy a very simple relation, allowing us to determine tan γ . Using a plausible dynamical assumption, γ can be fixed in an essentially unambiguous manner. The corresponding formalism can also be applied to B d → D ± π 0 , D ± ρ 0 ,… and B s → D ± K S(L) decays. Although these modes appear less attractive for the extraction of γ , they provide interesting determinations of sin φ q . In comparison with the conventional B d → J / ψK S(L) and B s → J / ψφ methods, these extractions do not suffer from any penguin uncertainties, and are theoretically cleaner by one order of magnitude.hep-ph/0301255CERN-TH-2003-010CERN-TH-2003-010oai:cds.cern.ch:6031432003-01-29
spellingShingle Particle Physics - Phenomenology
Fleischer, Robert
New, Efficient and Clean Strategies to Explore CP Violation Through Neutral B Decays
title New, Efficient and Clean Strategies to Explore CP Violation Through Neutral B Decays
title_full New, Efficient and Clean Strategies to Explore CP Violation Through Neutral B Decays
title_fullStr New, Efficient and Clean Strategies to Explore CP Violation Through Neutral B Decays
title_full_unstemmed New, Efficient and Clean Strategies to Explore CP Violation Through Neutral B Decays
title_short New, Efficient and Clean Strategies to Explore CP Violation Through Neutral B Decays
title_sort new, efficient and clean strategies to explore cp violation through neutral b decays
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1016/S0370-2693(03)00582-3
http://cds.cern.ch/record/603143
work_keys_str_mv AT fleischerrobert newefficientandcleanstrategiestoexplorecpviolationthroughneutralbdecays