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Jae Jun Kim

Publications and source records attributed to Jae Jun Kim.

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A possibility of describing a sequential gauge symmetry as a part of a tetrahedron rotational symmetry and its implications

We present a method in which the dimension-five and -six terms in a sequential gauge can coexist with that in a non-sequential gauge under a tetrahedron rotational symmetry. We start with the contents in the model proposed in a sequential gauge, meeting the conditions for the contents to be described in the rotational symmetry. Given that the breaking of the symmetry takes place in the dimension-five and -six terms via the flavor-specific Higgs scalars, we address how introducing the non-sequential contents can be realized. In doing so, we illustrate that the terms in the sequential gauge could be understood as the higher-order terms, the correction terms, and that in the non-sequential gauge as the leading order term. Our result could be understood as an illustration of introducing the sequential gauge as a reason for the mixing as having non-zero left-handed rotational matrix in the quark and the lepton sectors, how the mixing in the charged lepton sector can be small compared to that of the neutral sector, and how the sequential and the non-sequential gauge terms can coexist without introducing super-symmetry.

hep-ph

A constraint to the uncertainty associated with the elements in the quark mixing matrix

We present an extra condition by which the size of the uncertainty associated with the diagonal elements in the quark mixing matrix can be further constrained when the matrix is parameterized by a combination of three mixing angles and a Dirac phase. Then we discuss how the correlations among the uncertainties of the diagonal emenets can be used when we address issues such as the tension in the first row and the column of the matrix and discuss its implications.

hep-ph

When sound wave meets the neutrino anomaly

We propose that the sound wave coming to the inner side of Miniboone detector could be one of the sources for our having the neutrino anomaly in the experiment. We start with presenting a rough estimate for the size of the energy associated with the sound wave coming into the detector, the size of the loss of energy associate with the save wave as it travels down to the target medium due to their gravitationally interacting with the sound wave in a classical sense. After that, we describe that the neutrino anomaly could be due to the sound wave interacting with the detector material under the pressure due to the presence of the mineral oil and their producing phonon-induced electrons via a process such as the thermionic emission, which may lead more events to be identified as electron-like events in the experiment. We also address that the sound wave may scatter with the electrons produced from the electron-photon shower.

hep-ph