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We study the decay of large amplitude, almost periodic breather-like states in a deformed sine-Gordon model in one spatial dimension. We discover that these objects decay in a staggered fashion via a series of transitions, during which…

High Energy Physics - Theory · Physics 2020-05-26 Patrick Dorey , Tomasz Romanczukiewicz , Yakov Shnir

New heavy resonances are predicted by many extensions of the standard model of particle physics. Recent results for high mass resonance searches with the Compact Muon Solenoid detector, in the diphoton, dilepton, dijet and ttbar channels,…

High Energy Physics - Experiment · Physics 2019-08-13 Toyoko J. Orimoto

A phenomenological model for the quark structure of mesons is considered. The model is based on the tube model for QCD, where all quanta with nonzero transverse momenta are neglected. In the limit that the mass term of the gluons goes to…

High Energy Physics - Phenomenology · Physics 2009-10-30 Matthias Burkardt

We consider the Kondo tunneling induced by multiphonon emission/absorption processes in magnetic molecular complexes with low-energy singlet-triplet spin gap and show that the number of assisting phonons may be changed by varying the Zeeman…

Strongly Correlated Electrons · Physics 2009-11-13 K. Kikoin , M. N. Kiselev

Phonon-assisted tunneling plays a crucial role for electronic device performance and even more so with future size down-scaling. We show how one can include this effect in large-scale first-principles calculations using a single "special…

Mesoscale and Nanoscale Physics · Physics 2017-10-25 Tue Gunst , Troels Markussen , Mattias L. N. Palsgaard , Kurt Stokbro , Mads Brandbyge

A model of soliton-defect interactions in the sine-Gordon equations is studied using singular perturbation theory. Melnikov theory is used to derive a critical velocity for strong interactions, which is shown to be exponentially small for…

Pattern Formation and Solitons · Physics 2009-11-10 Roy H. Goodman , Richard Haberman

The fundamental action of superon-graviton model(SGM) for space-time and matter is written down explicitly in terms of the fields of the graviton and superons by using the affine and the spin connection formalisms, alternatively. Some…

High Energy Physics - Theory · Physics 2007-05-23 Kazunari Shima , Motomu Tsuda

Off-forward structure functions of the pion are investigated in twist-two and twist-three approximation. A simple model is used for the pion, which allows to introduce finite size effects, while preserving gauge invariance. Results for the…

High Energy Physics - Phenomenology · Physics 2009-11-10 F. Bissey , J. R. Cudell , J. Cugnon , J. P. Lansberg , P. Stassart

We investigate the emergence of a spectral mass in the signum-Gordon model, a nonlinear field theory characterized by a non-analytic, V-shaped potential where standard perturbative mass definitions are inapplicable. By analyzing the…

High Energy Physics - Theory · Physics 2026-04-17 João S. Streibel , Pawel Klimas

We report the first observation of bound-state proximity resonances in coupled dielectric resonators. The proximity resonances arise from the combined action of symmetry and dissipation. We argue that the large ratio between the widths is a…

Quantum Physics · Physics 2009-10-31 Kristi Pance , Lorenza Viola , S. Sridhar

There exist two interpretations of instantons in the literature. The first interpretation regards instanton as divider between the initial and final hypersurfaces. The Coleman-De Luccia instanton is one such an example. The second…

High Energy Physics - Theory · Physics 2019-02-27 Pisin Chen , Yao-Chieh Hu , Dong-han Yeom

Multi-electron giant dipole resonances of atoms in crossed electric and magnetic fields are investigated. Stationary configurations corresponding to a highly symmetric arrangement of the electrons on a decentered circle are derived, and a…

Atomic Physics · Physics 2011-02-24 Sascha Zoellner , Hans-Dieter Meyer , Peter Schmelcher

The nuclear giant resonances are studied by using a Fermi-liquid method, and the nuclear collective excitation energies of different values of $l$ are obtained, which are fitted with the centroid energies of the giant resonances of…

Nuclear Theory · Physics 2012-01-30 Bao-Xi Sun

We use the exact instanton expansion to illustrate various string characteristics of noncommutative gauge theory in two dimensions. We analyse the spectrum of the model and present some evidence in favour of Hagedorn and fractal behaviours.…

High Energy Physics - Theory · Physics 2014-11-18 Luca Griguolo , Domenico Seminara , Richard J. Szabo

We consider quantum tunnelling in asymmetric double-well systems for which the local minima in the two wells have the same energy, but the frequencies differ slightly. We derive a generalization of instanton theory for these asymmetric…

Chemical Physics · Physics 2020-09-04 Elena Jahr , Gabriel Laude , Jeremy O. Richardson

We present a class of systems for which the signal-to-noise ratio as a function of the noise level may display a multiplicity of maxima. This phenomenon, referred to as stochastic multiresonance, indicates the possibility that periodic…

Condensed Matter · Physics 2016-08-15 J. M. G. Vilar , J. M. Rubí

In this paper I describe a collective coordinate approach to the study of giant graviton states and their excitations in various field theories. The method simplifies considerably the understanding of emergent gauge symmetry of these…

High Energy Physics - Theory · Physics 2013-06-19 David Berenstein

The two applications are: 1. sometimes instanton numbers stratify moduli of bundles better than Chern numbers. 2. sometimes instanton numbers distinguish singularities better than the classical numerical invariants.

Algebraic Geometry · Mathematics 2007-05-23 Elizabeth Gasparim

Tunneling of an harmonically bound two-body system through an external Gaussian barrier is studied in a schematic model which allows for a better understanding of intricate quantum phenomena. The role of finite size and internal structure…

Nuclear Theory · Physics 2009-11-11 S. Bacca , H. Feldmeier

The semimicroscopic particle-hole dispersive optical model (PHDOM) is implemented to describe main properties of Isoscalar Giant Multipole Resonances (up to L=3) in medium-heavy closed-shell nuclei. The main properties are characterized by…

Nuclear Theory · Physics 2021-03-10 M. L. Gorelik , S. Shlomo , B. A. Tulupov , M. H. Urin