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Limits on the Observability of Direct CP Violation in the Decay $B_d^0 \rightarrow J/\psi \;K_s^0$ for ATLAS

The effects of CP violation in the decay $B_d^0 \rightarrow J/\psi\; K_s^0$ for low luminosity running at LHC for the ATLAS experiment were simulated using a simple Monte Carlo technique. A 95\% confidence limit of $-0.043<\mathcal{A}^{dir}_{CP}<0.029$ was found for the Standard Model case, wh...

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Detalles Bibliográficos
Autores principales: Booth, PA, Buttar, C M, Lehto, M H
Lenguaje:eng
Publicado: 2001
Materias:
Acceso en línea:http://cds.cern.ch/record/684198
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author Booth, PA
Buttar, C M
Lehto, M H
author_facet Booth, PA
Buttar, C M
Lehto, M H
author_sort Booth, PA
collection CERN
description The effects of CP violation in the decay $B_d^0 \rightarrow J/\psi\; K_s^0$ for low luminosity running at LHC for the ATLAS experiment were simulated using a simple Monte Carlo technique. A 95\% confidence limit of $-0.043<\mathcal{A}^{dir}_{CP}<0.029$ was found for the Standard Model case, where $\mathcal{A}^{dir}_{CP}=0$. The $5\sigma $ discovery limit for direct CP violation was found to be $\mathcal{A}^{dir}_{CP}=0.097\pm 0.008$. This was improved to $\mathcal{A}^{dir}_{CP}=0.078\pm 0.007$ by fixing $\sin 2\beta $ to the input value when fitting the generated asymmetries. Fixing the value of $\mathcal{A}^{dir}_{CP}$ when fitting had no effect on the mean fitted values of $\mathcal{A}^{mix-ind}_{CP}$ and reduced the errors by only about 15\%. The fitted value of $\mathcal{A}^{mix-ind}_{CP}$ and its errors were found not to vary significantly with the input value of $\mathcal{A}^{dir}_{CP}$. Using a smaller value of $\mathcal{A}^{mix-ind}_{CP}$ rather than a higher value, consistent with the Standard Model, did not produce significantly different results.
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spelling cern-6841982019-09-30T06:29:59Zhttp://cds.cern.ch/record/684198engBooth, PAButtar, C MLehto, M HLimits on the Observability of Direct CP Violation in the Decay $B_d^0 \rightarrow J/\psi \;K_s^0$ for ATLASDetectors and Experimental TechniquesThe effects of CP violation in the decay $B_d^0 \rightarrow J/\psi\; K_s^0$ for low luminosity running at LHC for the ATLAS experiment were simulated using a simple Monte Carlo technique. A 95\% confidence limit of $-0.043<\mathcal{A}^{dir}_{CP}<0.029$ was found for the Standard Model case, where $\mathcal{A}^{dir}_{CP}=0$. The $5\sigma $ discovery limit for direct CP violation was found to be $\mathcal{A}^{dir}_{CP}=0.097\pm 0.008$. This was improved to $\mathcal{A}^{dir}_{CP}=0.078\pm 0.007$ by fixing $\sin 2\beta $ to the input value when fitting the generated asymmetries. Fixing the value of $\mathcal{A}^{dir}_{CP}$ when fitting had no effect on the mean fitted values of $\mathcal{A}^{mix-ind}_{CP}$ and reduced the errors by only about 15\%. The fitted value of $\mathcal{A}^{mix-ind}_{CP}$ and its errors were found not to vary significantly with the input value of $\mathcal{A}^{dir}_{CP}$. Using a smaller value of $\mathcal{A}^{mix-ind}_{CP}$ rather than a higher value, consistent with the Standard Model, did not produce significantly different results.ATL-PHYS-2001-013oai:cds.cern.ch:6841982001-05-08
spellingShingle Detectors and Experimental Techniques
Booth, PA
Buttar, C M
Lehto, M H
Limits on the Observability of Direct CP Violation in the Decay $B_d^0 \rightarrow J/\psi \;K_s^0$ for ATLAS
title Limits on the Observability of Direct CP Violation in the Decay $B_d^0 \rightarrow J/\psi \;K_s^0$ for ATLAS
title_full Limits on the Observability of Direct CP Violation in the Decay $B_d^0 \rightarrow J/\psi \;K_s^0$ for ATLAS
title_fullStr Limits on the Observability of Direct CP Violation in the Decay $B_d^0 \rightarrow J/\psi \;K_s^0$ for ATLAS
title_full_unstemmed Limits on the Observability of Direct CP Violation in the Decay $B_d^0 \rightarrow J/\psi \;K_s^0$ for ATLAS
title_short Limits on the Observability of Direct CP Violation in the Decay $B_d^0 \rightarrow J/\psi \;K_s^0$ for ATLAS
title_sort limits on the observability of direct cp violation in the decay $b_d^0 \rightarrow j/\psi \;k_s^0$ for atlas
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/684198
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