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The model-independent method based on the triangle ideology is implemented to extract the CKM-matrix angle gamma in the decays of doubly heavy baryons containing the charmed and beauty quarks. We analyze a color structure of diagrams and…

High Energy Physics - Phenomenology · Physics 2009-11-07 V. V. Kiselev , O. P. Yushchenko

Color transparency occurs if a small-sized wave packet, formed in a high momentum transfer process, escapes the nucleus before expanding. The time required for the expansion depends on the masses of the baryonic components of the wave…

High Energy Physics - Phenomenology · Physics 2009-10-22 B. K. Jennings , G. A. Miller

Relativistic constituent quark models generally describe three-quark systems with particular interactions. The corresponding invariant mass eigenvalue spectra and pertinent eigenstates should exhibit the multiplet structure anticipated for…

Nuclear Theory · Physics 2007-05-23 T. Melde , W. Plessas , B. Sengl

We study a model of an i.i.d.~random environment in general dimensions $d\ge 2$, where each site is equipped with one of two environments. The model comes with a parameter $p$ which governs the frequency of the first environment, and for…

Probability · Mathematics 2022-08-30 Mark Holmes , Thomas S. Salisbury

The strangeness content of hadronic matter is studied in a string-flip model that reproduces various aspects of the QCD-inspired phenomenology, such as quark clustering at low density and color deconfinement at high density, while avoiding…

Nuclear Theory · Physics 2009-11-07 G. Toledo Sanchez , J. Piekarewicz

Holographic models that consider classical vector fields in a 5-d background provide successful effective descriptions for heavy vector meson spectra. This holds both in the vacuum and in a thermal medium, like the quark gluon plasma.…

High Energy Physics - Phenomenology · Physics 2025-08-19 Nelson R. F. Braga , Yan F. Ferreira , William S. Cunha

We compute the Euclidean hadronic tensor from charge density operators and extract elastic and resonance structures by employing exponential fits to the four-point correlator, as well as a Bayesian reconstruction inverse algorithm to obtain…

High Energy Physics - Lattice · Physics 2026-04-29 Jian Liang , Raza Sabbir Sufian , Bigeng Wang , Terrence Draper , Tanjib Khan , Keh-Fei Liu , Yi-Bo Yang , Christian Zimmermann

This PhD Thesis is mainly devoted to the study of hadronic matrix elements of kaons. Its inner structure can be divided in three parts. In Chapter 3 we address the issue of quantum corrections in Resonance Chiral Lagrangians with the aid of…

High Energy Physics - Phenomenology · Physics 2007-05-23 Oscar Cata

Accurately determining the underlying physical parameters of individual elements in integrated photonics is increasingly difficult as device architectures become more complex. Inferring these parameters directly from spectral measurements…

It is shown how to embed a critical point in a smooth background equation of state so as to yield the critical exponents and critical amplitude ratios expected of a transition in the same universality class as the liquid-gas phase…

Nuclear Theory · Physics 2022-10-20 Joseph Kapusta , Tom Welle , Christopher Plumberg

Distinguished from the system with one order parameter, systems described by two or more order parameters will manifest more complex and much richer phase diagram and critical phenomena. In systems of two order parameters, the phase…

Quantum Gases · Physics 2026-04-14 Yilun Xu

We study QCD in 1+1 dimensions in the large Nc limit using light-front Hamiltonian perturbation theory in the 1/Nc expansion. We use this formalism to exactly compute hadronic transition matrix elements for arbitrary currents at leading…

High Energy Physics - Phenomenology · Physics 2008-11-26 Jorge Mondejar

We confront lattice QCD results on the transition from the hadronic phase to the quark--gluon plasma with hadron resonance gas and percolation models. We argue that for T < T_c the equation of state derived from Monte--Carlo simulations of…

High Energy Physics - Phenomenology · Physics 2011-09-13 F. Karsch , K. Redlich , A. Tawfik

We introduce a machine learning prediction workflow to study the impact of defects on the Raman response of 2D materials. By combining the use of machine-learned interatomic potentials, the Raman-active $\Gamma$-weighted density of states…

We investigate theoretically the ground-state configurations of two-dimensional charged-particle systems with an elliptical hard-wall boundary and their vibrational eigenmodes. The systems exhibit a series of structural transitions, finally…

Strongly Correlated Electrons · Physics 2007-05-23 Zhen-zhong Zhang , Kai Chang

Two-dimensional ternary locally resonant phononic crystals used to consist of cylindrical scatterers with uniform coatings in their exterior. An alternative coating scheme with a comblike profile is proposed and investigated in this letter.…

Materials Science · Physics 2013-12-05 Yan-Feng Wang , Yue-Sheng Wang , Litian Wang

The topological properties of a material depend on its symmetries, parameters, and spatial dimension. Changes in these properties due to parameter and symmetry variations can be understood by computing the corresponding topological…

Mesoscale and Nanoscale Physics · Physics 2025-11-27 Martin Rodriguez-Vega , Terry A. Loring , Alexander Cerjan

We construct a simple holographic QCD model to study nuclear matter to strange matter transition. The interaction of dense medium and hadrons is taken care of by imposing the force balancing condition for stable D4/D6/D6 configuration. By…

High Energy Physics - Theory · Physics 2015-05-14 Youngman Kim , Yunseok Seo , Sang-Jin Sin

We study a class of models of i.i.d.~random environments in general dimensions $d\ge 2$, where each site is equipped randomly with an environment, and a parameter $p$ governs the frequency of certain environments that can act as a barrier.…

Probability · Mathematics 2021-11-02 Mark Holmes , Thomas S. Salisbury

We present a detailed theoretical characterization of the two fundamental collective resonances underlying the xenon giant dipole resonance (GDR). This is achieved consistently by two complementary methods implemented within the framework…

Atomic Physics · Physics 2015-03-10 Yi-Jen Chen , Stefan Pabst , Antonia Karamatskou , Robin Santra