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Rare And Radiative B Meson Decays From the BaBar Experiment

Rare And Radiative B Meson Decays From the BaBar Experiment
Author: J. Stelzer
Publisher:
Total Pages: 5
Release: 2006
Genre:
ISBN:

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Since its start in 1999 the BABAR experiment has collected a vast amount of data. Electron-positron collisions at the energy of the {Upsilon}(4S) resonance have produced about 240 million coherent B{sup 0}{bar B}{sup 0} and B{sup +}B{sup -} pairs, opening the doors for exploration of rare B meson decays. An overview of the electroweak penguin physics program of BABAR is given, the analysis of two specific decays is presented in detail.


The Search for Rare Non-hadronic B-meson Decays with Final-state Neutrinos Using the BaBar Detector

The Search for Rare Non-hadronic B-meson Decays with Final-state Neutrinos Using the BaBar Detector
Author: Dana Lindemann
Publisher:
Total Pages:
Release: 2012
Genre:
ISBN:

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"This thesis presents the searches for two rare B meson decays: the radiative leptonic decay B+ -> l+ nu gamma (l = e, mu) and the flavor-changing neutral current B -> K(*) nu nubar. These searches use the full dataset collected by the BaBar experiment, which corresponds to almost 500 million BB pairs. After fully reconstructing the hadronic decay of one of the B mesons in Upsilon(4S) -> BB decays, evidence of B+ -> l+ nu gamma or B -> K(*) nu nubar is looked for in the rest of the event. No significant evidence of either signal decay is observed. Model-independent branching-fraction upper limits are set at BR(B ->e nu gamma)17 x10 {-6}, BR(B -mu nu gamma)24 x10 {-6}, and BR(B -l nu gamma)15.6 x10 {-6}, all at the 90% confidence level. These are currently the most stringent published upper limits for B+ - l+ nu gamma. In addition, branching-fraction upper limits are set at BR(B -> K+ nu nubar)3.7 x10 {-5}, BR(B - K0 nu nubar)8.0 x10 {-5}, BR(B - K*+ nu nubar)11.5 x10 {-5}, and BR(B - K*0 nu nubar)9.2 x10 {-5}, all at the 90% confidence level. For additional sensitivity to New Physics contributions, partial B - K(*) nu nubar branching-fraction upper limits are also determined over the full kinematic range." --


Rare B Decays at BaBar

Rare B Decays at BaBar
Author:
Publisher:
Total Pages:
Release: 2005
Genre:
ISBN:

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The authors present recent results on rare B meson decays based on data taken by the BABAR detector at the PEP-II asymmetric ee− collider. Included in this report are measurements of branching fractions and other quantities of interest for several hadronic, radiative, electroweak, and purely leptonic decays of B mesons.


Rare B Meson Decays With Omega Mesons

Rare B Meson Decays With Omega Mesons
Author: Lei Zhang
Publisher:
Total Pages: 184
Release: 2006
Genre:
ISBN:

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Rare charmless hadronic B decays are particularly interesting because of their importance in understanding the CP violation, which is essential to explain the matter-antimatter asymmetry in our universe, and of their roles in testing the ''effective'' theory of B physics. The study has been done with the BABAR experiment, which is mainly designed for the study of CP violation in the decays of neutral B mesons, and secondarily for rare processes that become accessible with the high luminosity of the PEP-II B Factory. In a sample of 89 million produced B{bar B} pairs on the BABAR experiment, we observed the decays B{sup 0} {yields} {omega}K{sup 0} and B{sup +} {yields} {omega}{rho}{sup +} for the first time, made more precise measurements for B{sup +} {yields} {omega}h{sup +} and reported tighter upper limits for B {yields} {omega}K* and B{sup 0} {yields} {omega}{rho}{sup 0}.


Study of Rare B-Meson Decays Related to the CPObservable Sin(2beta+gamma) at the BABAR Experiment

Study of Rare B-Meson Decays Related to the CPObservable Sin(2beta+gamma) at the BABAR Experiment
Author:
Publisher:
Total Pages: 237
Release: 2006
Genre:
ISBN:

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This study reports the observation of the decays B02!$*+\atop{s}$[pi]- and B02!(*)-K+ in a sample of 230 x 106 Y(4S) 2!B$\bar{B}$ events collected with the BABAR detector at the PEP-II asymmetric-energy e+e- storage ring, located at the Stanford Linear Accelerator Center. The branching fractions [beta](B0 2!D$+\atop{S}$[pi]- ) = (1.3 ± 0.3 (stat) ± 0.2 (syst)) x 10-5, [beta](B0 2!D$+\atop{S}$K+) = (2.5 ± 0.4 (stat) ± 0.4 (syst)) x 10-5, [beta](B02!$*+\atop{s}$[pi]- ) = (2.8 ± 0.6 (stat) ± 0.5 (syst)) x 10-5, and [beta](B02!(*)-K+) = (2.0 ± 0.5 (stat) ± 0.4 (syst)) x 10-5 are measured. The significance of the measurements to differ from zero are 5, 9, 6, and 5 standard deviations, respectively. This is a first observation of the decaysB+2!$*+\atop{s}$[pi]- and B02!(*)-K+. These results may potentially be useful in determining the CP asymmetry parameter sin(2[beta] + [gamma]) in the decays B02!$*+\atop{s}$[pi]-


A Search for the Rare Decay [B Meson to Two Photons]

A Search for the Rare Decay [B Meson to Two Photons]
Author: Andrew Michael Ruland
Publisher:
Total Pages: 362
Release: 2010
Genre:
ISBN:

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This thesis describes a search for the rare radiative decay of a B meson to two photons. where the charged congugate mode is implied throughout. These decays are highly suppressed in the Standard Model where the branching fraction is expected to be of order 10^-8. In some new physics scenarios this could be enhanced by up to an order of magnitude to 10^-7. Therefore an observation of a significant signal above the Standard Model prediction could be a sign of new physics. The search for this rare decay was performed using the data collected with the BaBar detector at the SLAC National Accelerator Laboratory PEP-II storage ring operating at the Upsilon(4S) resonance. The analysis uses a dataset with an integrated luminosity of 425.7 fb-1 corresponding to 467 million BB pairs. A signal yield of 21.3 +12.8 -11.8 events with a significance of 1.88 sigma was measured using an unbinned extended maximum likelihood fit. An upper limit on the branching fraction is set at the 90% confidence level of less than 3.2 times 10^-7. This is about two times more stringent than the best upper limit of less than 6.2 times 10^-7 published by the Belle collaboration.