Search For The Flavor Changing Neutral Current Decay K Sup Yields Pi Sup Nu Nu PDF Download

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Search for the Flavor-changing Neutral Current Decay K Sup + Yields. Pi. Sup +. Nu. Nu

Search for the Flavor-changing Neutral Current Decay K Sup + Yields. Pi. Sup +. Nu. Nu
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Total Pages: 10
Release: 1990
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The observation that flavor-changing neutral currents (FCNC) in weak decays are highly suppressed was first explained by Glashow, Iliopoulos and Maiani in 1970, and their idea has since become a cornerstone of the Standard Model. They proposed a model of the weak interaction that included a then new fourth quark and which, in a natural way, allowed the existence of a neutral vector boson without inducing FCNC's at tree level. Thus the couplings of the neutral intermediary{hor ellipsis}cause no embarrassment.'' In higher order through, decays like K →?l{bar l} can proceed. Measurements of such processes provide a detailed test of the Standard Model since definite predictions for their rates can be calculated. Conversely, if no contradictions are found and the standard model is assumed to describe the physics, measurements limit the allowed values of the parameters of the model. As is often the case in studying processes that are highly suppressed and heretofore unseen, improvements in the sensitivity of experiments allow the possibility for the discovery of new physics that exhibits a similar experimental signature. This paper describes experiment 787 at Brookhaven which is expected to address some of these issues. The status and future of the experiment will be described here. The main goal of E787 is to measure the rate of K →?+?{bar {nu}} at the standard model level. In addition, the experiment has sensitivity to other FCNC decays of the charged kaon, in particular the decays K+ →?+?+?− and K+ →?+??


SEARCH FOR THE RARE KAON DECAY K[sup+][yields][pi][sup+][nu][bar[nu].

SEARCH FOR THE RARE KAON DECAY K[sup+][yields][pi][sup+][nu][bar[nu].
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Release: 2003
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This thesis describes the search for the rare decay K[sup+][yields][pi][sup+][nu][bar[nu]] in the pion momentum region 140 MeV/c[le] P[sub[pi][sup+]][le] 195 MeV/c. This is a Flavor Changing Neutral Current (FCNC) decay which is forbidden to the first order in the Standard Model (SM) by the GIM mechanism. However, this decay mode is allowed in the second order by two Z-Penguin and one box diagram and is expected to have a branching ratio of (0.72[+-] 0.21) x 10[sup -10]. This decay mode is sensitive to the coupling of top to down quark and therefore a measurement of the branching ratio for this decay mode provides a measurement of the Cabibbo-Kobayashi-Maskawa matrix element V[sub td]. The recent observation of two events in the pion momentum region 211 MeV/c[le] P[sup[pi][sup+]][le] 229 MeV/c estimates a branching ratio of 1.57[sub -0.82][sup+1.75] x 10[sup -10] for the same decay mode. We have extended the search for this decay to the lower pion momentum region. Data collected by the Experiment E787 at Brookhaven National Laboratory during the 1996 and 1997 run were analyzed in this thesis.


Government Reports Annual Index

Government Reports Annual Index
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Total Pages: 1608
Release: 1990
Genre: Government reports announcements & index
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Search for D[sup +] [yields] [pi][sup +][mu][sup +][mu][sup [minus].

Search for D[sup +] [yields] [pi][sup +][mu][sup +][mu][sup [minus].
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Release: 2005
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Flavor-changing neutral current decays are forbidden in lowest order in the Standard Model. The authors present results of a search for the charm changing neutral current decay D[sup +] [yields] [pi][sup +][mu][sup +][mu][sup [minus]] based on the analysis of one third of the data from Fermilab experiment E791, accumulated during the 1991--92 fixed target run with a 500 GeV negative pion beam incident on a segmented target. Assuming that the decay kinematics are the same as for D[sup +] [yields] K[sup [minus]][pi][sup +][pi][sup +], they set an upper limit on the branching ratio for this channel, B(D[sup +] [yields] [pi][sup +][mu][sup +][mu][sup [minus]])


Energy Research Abstracts

Energy Research Abstracts
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Total Pages: 992
Release: 1989
Genre: Power resources
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The K[sub L][yields][pi][sup 0][nu][anti[nu] Decay Beyond the Standard Model

The K[sub L][yields][pi][sup 0][nu][anti[nu] Decay Beyond the Standard Model
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Release: 2001
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The K[sub L][yields][pi][sup 0][nu][anti[nu]] decay is analyzed in a model independent way. When lepton flavor is conserved, this decay mode is a manifestation of CP violating interference between mixing and decay. Consequently, a theoretically clean relation between the measured rate and electroweak parameters holds in any given model.


Search for Flavor-changing Neutral Current and Lepton-flavor Violating Decays of D[sup 0] --] [ell][sup +] [ell][sup -].

Search for Flavor-changing Neutral Current and Lepton-flavor Violating Decays of D[sup 0] --] [ell][sup +] [ell][sup -].
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Release: 2004
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The authors report on a search for the flavor-changing neutral current decays D[sup 0] --> e[sup +]e[sup -] and D[sup 0] --> [mu][sup +][mu][sup -], and the lepton-flavor violating decay D[sup 0] --> e[sup [+-]][mu][sup [-+]]. The measurement is based on 122 fb[sup -1] of data collected by the BABAR detector at the PEP-II asymmetric e[sup +]e[sup -] collider. No evidence is found for any of the decays. The upper limits on the branching fractions, at the 90% confidence level, are 1.2 x 10[sup -6] for D[sup 0] --> e[sup +]e[sup -], 1.3 x 10[sup -6] for D[sup 0] --> [mu][sup +][mu][sup -], and 8.1 x 10[sup -7] for D[sup 0] --> e[sup [+-]][mu][sup [-+]].


Flavor Changing Kaon Decays from Hypercp: Measurements of the K+ ---] Pi+- Mu+ Mu- Branching Ratios

Flavor Changing Kaon Decays from Hypercp: Measurements of the K+ ---] Pi+- Mu+ Mu- Branching Ratios
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Release: 2004
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The Fermilab HyperCP collaboration is making precision studies of charged hyperon and kaon decays, as well as searches for rare and forbidden hyperon and kaon decays. We report here on measurements of the branching ratios of the flavor-changing neutral-current decays: K[sup[+-]][yields][pi][sup[+-]][mu][sup+][mu][sup -], and compare our results to theoretical predictions. This is the first observation of the K[sup -][yields][pi][sup -][mu][sup+][mu][sup -] decay.