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Rare and challenging charm decays at LHCb

Abstract:

This thesis presents two studies of charged charm meson decays using proton- proton collision data, corresponding to an integrated luminosity of 3 fb−1, recorded by the LHCb experiment.

A search for D(s)+ → π+μ+μ- decays is performed. Rare decays of charged charm mesons have not previously been observed unlike their counterpart B meson and kaon decays. Such decays are cu quark transitions and take place via loop diagrams within the Standard Model. Measurements of their branching fractions are an indirect test of New Physics, whose virtual contributions may enhance such quantities. No signals are observed and the 90% (95%) CL limits on the branching fractions, the most stringent to date, are found to be,

B(D+ → π+μ+μ-) < 2.9 (3.3) × 10-8,

B(Ds+ → π+μ+μ-) < 1.76 (1.91) × 10-7.

The charge asymmetry measurement of D+ → π+π0 using π0 → e+e-γ decays is also described. Charge asymmetry in the Standard Model is expected to be small for charm meson decays. Any measured deviation from zero would be evidence of New Physics. This decay has not previously been observed at a hadron collider and the measurement acts as a 'proof of principle' study allowing a future analysis to examine the decay mode. No evidence of CP violation is found.

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Institution:
University of Oxford
Division:
MPLS
Department:
Physics
Sub department:
Particle Physics
Oxford college:
St John's College
Role:
Author

Contributors

Role:
Supervisor


Publication date:
2014
DOI:
Type of award:
DPhil
Level of award:
Doctoral
Awarding institution:
University of Oxford


Language:
English
Keywords:
Subjects:
UUID:
uuid:0f960d89-76a1-4222-9d11-922fd7516339
Local pid:
ora:12409
Deposit date:
2016-03-02
ARK identifier:

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