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Soo-Jong REY

Publications and source records attributed to Soo-Jong REY.

8 recordsLinked to original sources

Collective Coordinate Quantization of Dirichlet Branes

Collective coordinate quantization of Dirichlet branes is discussed. Utilizing Polchinski's combinatoric rule, semiclassical D-brane wave functional is given in proper-time formalism. D-brane equation of motion is then identified with renormalization group equation of defining Dirichlet open string theory. Quantum mechanical size of macroscopically charged D-brane is illustrated and striking difference from ordinary field theory BPS particle is emphasized.

hep-th

On the Thermal Regeneration Rate for Light Gravitinos in the Early Universe

We investigate the light gravitino regeneration rate in the early Universe in models based on $N=1$ supergravity. Motivated by a recent claim by Fischler, we evaluate finite-temperature effects on the gravitino regeneration rate due to the hot primordial plasma for a wide range of the supersymmetry-breaking scale $F$. We find that thermal corrections to the gravitino pole mass and to the Goldstino coupling are negligible for a wide range of temperatures, thereby justifying the extension of the equivalence theorem for the helicity-1/2 gravitino and Goldstino to a hot primordial plasma background. Utilizing the Braaten-Pisarski resummation method, the helicity-1/2 gravitino regeneration rate is found to be $0.25 α_s(T) \log(1/α_s(T))|{m_{\rm soft}/F}|^2 T^3(1 + α_s(T) \log(1/α_s(T)) + T^2 / |F|)$ up to a calculable, model-dependent ${\cal O}(1)$ numerical factor. We review the implications of this regeneration rate for supergravity cosmology, focusing in particular on scenaria for baryogenesis.

hep-ph

Normalization of the Perturbative QCD Corrections for $B\to X_s \, γ$ Decay

We study the normalization of perturbative QCD corrections to the inclusive $B \rightarrow X_s γ$ decay. We propose to set the renormalization scale using the Brodsky-Lepage-Mackenzie (BLM) method. In the proposed method the scale is determined by absorbing the vacuum polarization correction from light fermions to renormalization scale but not including the anomalous dimensions. The BLM scale depends in general on the renormalization scheme and the factorization scale. We find that the BLM scale is insensitive to the factorization scale. In the heavy-quark potential scheme, we find that the BLM scale is $μ_{BLM} \approx (0.315 - 0.334) m_b$ when the factorization scale varies from $m_b/2$ to $2 m_b$.

hep-ph

Light-Front View of The Axial Anomaly

Motivated by an apparent puzzle of the light-front vacua incompatible with the axial anomaly, we have considered the two-dimensional massless Schwinger model for an arbitrary interpolating angle of the quantization surface. By examining spectral deformation of the Dirac sea under an external electric field semiclassically, we have found that the axial anomaly is quantization angle independent. This indicates an intricate nontrivial vacuum structure present even in the light-front limit.

hep-ph

Nonperturbative QCD Effects in Inclusive B Decays

In this talk I report calculable nonperturbative QCD effects to the inclusive semileptonic and radiative B-meson decay rates. Small instantons contribute to the Wilson coefficient functions at scales below $m_b$. It is found that the instantons give rise to a potentially large correction to the decay rate near the boundaries of the phase space for the semileptonic decay case, but totally negligible for the radiative case. I explain how the difference may be understood as a simple consequence of different kinematics in the two cases. {Talk Presented at IFT Workshop on Yukawa Couplings and the Origin of Mass University of Florida, Gainesville, Feb. 11-13, 1994 Proceeding to be Published by International Press, 15 pages (LATEX) 5 Postscript figures available upon request, International Press macro file ip-author.sty appended}

hep-ph

Instanton Contribution to $B \rightarrow X_{s} γ$ Decay

We study instanton effects on $B \rightarrow X_sγ$ decay using the heavy quark effective field theory and the operator product expansion. In the dilute gas approximation the effect is negligibly small. This is in contrast to the result of the instanton effect in inclusive semileptonic $b\rightarrow u$ decay but similar to the inclusive hadronic $τ$ decay. We discuss the similarities and differences of the $B \rightarrow X_sγ$ decay compared to inclusive hadronic $τ$ decay and semileptonic $B$ decay.

hep-ph

Effective Field Theory for Diffractive QCD Processes

An effective field theory describing the QCD diffraction scattering is constructed. The constituent quarks interacting with multiperi- pheral gluons and Goldstone bosons are described by impact- parameter two-dimensional sigma models for the color and the flavor degrees of freedom. The elastic scattering amplitude is then shown to factorize into the hard and the soft pomeron contributions (talk at 5th Blois Workshop on Elastic and Diffractive Scattering Workshop, June 8 - 12, 1993, Providence RI USA)

hep-ph

Semiclassical Gravity and Invisible Axions

We show that charged Eguchi-Hanson instantons provide a concrete and calculable new source of intrinsic Peccei-Quinn symmetry breaking by quantum gravity. The size of this breaking is shown to depend sensitively on the short distance details of a given theory, but is generically suppressed by fermion zero modes. Demanding that these gravitational effects not affet the axion solution to the strong CP problem, we find that at least two sets of quarks with differing Peccei-Quinn charges are required. In addition, these effects obviate the cosmological axion domain wall problem but leave unchanged problems associated with coherent axion oscillations.

hep-ph