285 research outputs found
Lifetime and mass of rho meson in correlation with magnetic-dimensional reduction
It is simply anticipated that in a strong magnetic configuration, the Landau
quantization ceases the neutral rho meson to decay to the charged pion pair, so
the neutral rho meson will be long-lived. To closely access this naive
observation, we explicitly compute the charged pion-loop in the magnetic field
at the one-loop level, to evaluate the magnetic dependence of the lifetime for
the neutral rho meson as well as its mass.Due to the dimensional reduction
induced by the magnetic field (violation of the Lorentz invariance), the
polarization (spin ) modes of the rho meson, as well as the
corresponding pole mass and width, are decomposed in a nontrivial manner
compared to the vacuum case. To see the significance of the reduction effect,
we simply take the lowest-Landau level approximation to analyze the
spin-dependent rho masses and widths. We find that the "fate" of the rho meson
may be more complicated because of the magnetic-dimensional reduction: as the
magnetic field increases, the rho width for the spin starts to develop,
reach a peak, to be vanishing at the critical magnetic field to which the
folklore refers. On the other side, the decay rates of the other rhos for
monotonically increase as the magnetic field develops. The
correlation between the polarization dependence and the Landau-level truncation
is also addressed.Comment: 10 pages, 2 figures, typos correcte
Walking on the Ladder: 125 GeV Technidilaton, or Conformal Higgs -Dedicated to the late Professor Yoichiro Nambu-
The walking technicolor based on the ladder Schwinger-Dyson gap equation is
studied, with the scale-invariant coupling being an idealization of the
Caswell-Banks-Zaks infrared fixed point in the "anti-Veneziano limit", such
that with fixed and
fixed (), of the gauge theory with massless
flavors near criticality. We show that the 125 GeV Higgs can be naturally
identified with the technidilaton (TD) predicted in the walking technicolor, a
pseudo Nambu-Goldstone (NG) boson of the spontaneous symmetry breaking of the
approximate scale symmetry. Ladder calculations yield the TD mass from
the trace anomaly as , independently of
the renormalization point , where is the dynamical mass of the
technifermion, and the TD decay
constant. It reads , ( GeV),
which implies for in the one-family model (), in
good agreement with the current LHC Higgs data. The result reflects a generic
scaling as a vanishing trace anomaly, namely the TD has a
mass vanishing in the anti-Veneziano limit, similarly to meson as
a pseudo-NG boson of the ordinary QCD with vanishing anomaly in the
Veneziano limit ().Comment: revtex4, 36 pages, 7 eps figures, some corrections made, references
added; a version to appear in JHEP; typo correcte
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