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Novel method for measuring charm-mixing parameters using multibody decays

We propose a novel method to measure flavor oscillations and charge-parity (CP) violation in charm mixing. The approach applies to multibody charm decays, such as D0→KS0π+π-, and avoids the need for a fit of the decay amplitudes while suppressing biases due to nonuniform signal reconstruction effici...

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Detalles Bibliográficos
Autores principales: Di Canto, A., Garra Ticó, J., Gershon, T., Jurik, N., Martinelli, M., Pilař, T., Stahl, S., Tonelli, D.
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.99.012007
http://cds.cern.ch/record/2652371
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author Di Canto, A.
Garra Ticó, J.
Gershon, T.
Jurik, N.
Martinelli, M.
Pilař, T.
Stahl, S.
Tonelli, D.
author_facet Di Canto, A.
Garra Ticó, J.
Gershon, T.
Jurik, N.
Martinelli, M.
Pilař, T.
Stahl, S.
Tonelli, D.
author_sort Di Canto, A.
collection CERN
description We propose a novel method to measure flavor oscillations and charge-parity (CP) violation in charm mixing. The approach applies to multibody charm decays, such as D0→KS0π+π-, and avoids the need for a fit of the decay amplitudes while suppressing biases due to nonuniform signal reconstruction efficiencies as functions of phase space and decay time. Data are partitioned in decay-time and Dalitz-plot regions (bins). The Dalitz-plot bins are symmetric with respect to the principal bisector and chosen to ensure nearly constant values of the strong interaction phases in each. The ratios of signal yields observed in each symmetric bin pair are fit as functions of decay time, using independent auxiliary measurements of the strong interaction phases as constraints, to determine the relevant physics parameters. Simulation shows a 35% improvement in sensitivity to the normalized charm-eigenstate mass difference with respect to existing model-independent methods. In addition, we introduce a parametrization of oscillation and CP-violation effects in charm mixing that has attractive statistical properties and may find wider applicability.
id cern-2652371
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
record_format invenio
spelling cern-26523712021-09-23T02:05:31Zdoi:10.1103/PhysRevD.99.012007http://cds.cern.ch/record/2652371engDi Canto, A.Garra Ticó, J.Gershon, T.Jurik, N.Martinelli, M.Pilař, T.Stahl, S.Tonelli, D.Novel method for measuring charm-mixing parameters using multibody decayshep-phParticle Physics - Phenomenologyhep-exParticle Physics - ExperimentWe propose a novel method to measure flavor oscillations and charge-parity (CP) violation in charm mixing. The approach applies to multibody charm decays, such as D0→KS0π+π-, and avoids the need for a fit of the decay amplitudes while suppressing biases due to nonuniform signal reconstruction efficiencies as functions of phase space and decay time. Data are partitioned in decay-time and Dalitz-plot regions (bins). The Dalitz-plot bins are symmetric with respect to the principal bisector and chosen to ensure nearly constant values of the strong interaction phases in each. The ratios of signal yields observed in each symmetric bin pair are fit as functions of decay time, using independent auxiliary measurements of the strong interaction phases as constraints, to determine the relevant physics parameters. Simulation shows a 35% improvement in sensitivity to the normalized charm-eigenstate mass difference with respect to existing model-independent methods. In addition, we introduce a parametrization of oscillation and CP-violation effects in charm mixing that has attractive statistical properties and may find wider applicability.We propose a novel method to measure flavor-oscillations and charge-parity (CP) violation in charm mixing. The approach uses multibody charm decays, such as $D^0\to K_S^0\pi^+\pi^-$, and avoids the need for a fit of the decay amplitudes while suppressing biases due to nonuniform signal-reconstruction efficiencies as functions of phase space and decay time. Data are partitioned in decay-time and Dalitz-plot regions (bins). The Dalitz-plot bins are symmetric with respect to the principal bisector and chosen to ensure nearly constant values of the strong-interaction phases in each. The ratios of signal yields observearXiv:1811.01032oai:cds.cern.ch:26523712018-11-02
spellingShingle hep-ph
Particle Physics - Phenomenology
hep-ex
Particle Physics - Experiment
Di Canto, A.
Garra Ticó, J.
Gershon, T.
Jurik, N.
Martinelli, M.
Pilař, T.
Stahl, S.
Tonelli, D.
Novel method for measuring charm-mixing parameters using multibody decays
title Novel method for measuring charm-mixing parameters using multibody decays
title_full Novel method for measuring charm-mixing parameters using multibody decays
title_fullStr Novel method for measuring charm-mixing parameters using multibody decays
title_full_unstemmed Novel method for measuring charm-mixing parameters using multibody decays
title_short Novel method for measuring charm-mixing parameters using multibody decays
title_sort novel method for measuring charm-mixing parameters using multibody decays
topic hep-ph
Particle Physics - Phenomenology
hep-ex
Particle Physics - Experiment
url https://dx.doi.org/10.1103/PhysRevD.99.012007
http://cds.cern.ch/record/2652371
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