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Charm Mixing - Theory
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Proceedings of the CHARM 2007 Workshop, Ithaca, NY, August 5-8, 2007 1
Charm Mixing - Theory
E. Golowich
Physics Department, University of Massachusetts, Amherst, MA 01003, USA
We discuss Standard Model (SM) and New Physics (NP) descriptions of D0 mixing. The SM part
of the discussion addresses both quark-level and hadron-level contributions. The NP part describes
our recent works on the rate difference ?ΓD and the mass difference ?MD. In particular, we
describe how the recent experimental determination of ?MD is found to place tightened restrictions
on parameter spaces for 17 of 21 NP models considered in a recent paper by Hewett, Pakvasa, Petrov
and myself.
I. INTRODUCTION
Given the forthcoming operation of the LHC, per-
haps the dominant role of experimental flavor studies
in particle physics will be supplanted by discoveries in
the so-called new physics. Even if flavor physics faces
an unsure future, all would acknowledge its remark-
able recent progress via the observation of rare phe-
nomena such as CP-violation in B-mesons or particle-
antiparticle mixing for Bs and D
0 mesons. If new
physics is indeed observed, the continued exploration
of rare observables could well be an asset in decipher-
ing exotic LHC events.
My purpose in this talk is to describe two recent
theoretical contributions to D0 mixing [1, 2].[22] Both
Ref. [1] and Ref. [2] should be considered in the con-
text of the recent HFAG values [3],
xD ≡ ?MD
ΓD
=
(
8.4+3.2?3.4
) · 10?3
yD ≡ ?ΓD
2ΓD
= (6.9± 2.1) · 10?3 . (1)
In light of the Physical Review Letters criteria of ’ob-
servation’ ( 5σ) or ’evidence’ (3σ-to-5σ), we see that
the above 2.4σ determination for xD amounts to a
’measurement’ ( 3σ). As such, we all await improv-
ments in sensitivity for charm mixing.
The observed signal is seen to occur at about the 1%
level. Whether or not this is the magnitude expected
for the SM signal is a topic I will discuss shortly.
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