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We compute the spectrum of excited nucleons using the anisotropic Wilson lattice with two flavors of dynamical fermions. Using optimized sets of operators which transform irreducibly under the octahedral group, matrices of correlation…

We present a dedicated analysis of the influence of excited states on the calculation of nucleon matrix elements. This calculation is performed at a fixed value of the lattice spacing, volume and pion mass that are typical of contemporary…

High Energy Physics - Lattice · Physics 2015-05-30 Simon Dinter , Constantia Alexandrou , Martha Constantinou , Vincent Drach , Karl Jansen , Dru B. Renner

An approach for relating the nucleon excited states extracted from lattice QCD and the nucleon resonances of experimental data has been developed using the Hamiltonian effective field theory (HEFT) method. By formulating HEFT in the finite…

A continuum approach to the three valence-quark bound-state problem in quantum field theory is used to perform a comparative study of the four lightest $(I=1/2,J^P = 1/2^\pm)$ baryon isospin-doublets in order to elucidate their structural…

In Nature the excited states of the hadron spectrum appear as resonances. Consequently, there has been significant interest in studying the excited baryon spectrum using lattice QCD. With this in mind we perform spectroscopic calculations…

High Energy Physics - Lattice · Physics 2013-01-17 Adrian L. Kiratidis , Waseem Kamleh , Derek B. Leinweber , Peter Moran

Studying the structure of excited nucleon states employing the electroproduction of exclusive reactions is an important avenue for exploring the nature of the non-perturbative strong interaction. The electrocouplings of $N^*$ states in the…

Nuclear Experiment · Physics 2019-08-13 Daniel S. Carman

We present the ground and excited state spectra of doubly and triply-charmed baryons by using lattice QCD with dynamical clover fermions. A large set of baryonic operators that respect the symmetries of the lattice and are obtained after…

High Energy Physics - Lattice · Physics 2013-11-19 M. Padmanath , Robert G. Edwards , Nilmani Mathur , Michael Peardon

A systematic way to constructing optimized interpolating operators strongly coupled to QCD two-particle states is developed, which is achieved by incorporating inter-hadron spatial wavefunctions. To efficiently implement these operators in…

High Energy Physics - Lattice · Physics 2025-07-15 Yan Lyu , Sinya Aoki , Takumi Doi , Tetsuo Hatsuda , Kotaro Murakami , Takuya Sugiura

Techniques to compute hadron properties from lattice QCD rely upon the limit of long time separation. For baryons, the signal-to-noise problem often restricts one to time separations that are not ideally long, and for which couplings to…

High Energy Physics - Lattice · Physics 2015-08-04 Brian C. Tiburzi

Using Heavy Quark Effective Theory with non-perturbatively determined parameters in a quenched lattice calculation, we evaluate the splittings between the ground state and the first two radially excited states of the $B_s$ system at static…

High Energy Physics - Lattice · Physics 2010-07-13 Benoît Blossier , Michele Della Morte , Nicolas Garron , Georg von Hippel , Tereza Mendes , Hubert Simma , Rainer Sommer

Highly excited states for isospin 1/2 baryons are calculated for the first time using lattice QCD with two flavors of dynamical quarks. Anisotropic lattices are used with two pion masses: 416(36) MeV and 578(29) MeV. The lowest four…

Quenched QCD hadron spectrum is calculated with Wilson's quark action at $\beta=5.85$ and 6.0 on a $24^3 \times 54$ lattice. We discuss the problem of whether we have extracted the mass of the ground state at these $\beta$'s without…

High Energy Physics - Lattice · Physics 2009-10-22 QCDPAX collaboration , Y. Iwasaki , K. Kanaya , S. Sakai , T. Yoshie , T. Hoshino , T. Shirakawa , Y. Oyanagi

By capturing the characteristics of the Bethe-Salpeter amplitude for the pion excitation state, we construct an algebraic model to provide the overall features of the pion first excitation state parton distribution amplitude and…

High Energy Physics - Phenomenology · Physics 2025-01-28 Xiaobin Wang , Lei Chang

We present full accounts of a method to extract nucleon-nucleon (NN) potentials from the Bethe-Salpter amplitude in lattice QCD. The method is applied to two nucleons on the lattice with quenched QCD simulations. By disentangling the mixing…

High Energy Physics - Lattice · Physics 2010-04-30 Sinya Aoki , Tetsuo Hatsuda , Noriyoshi Ishii

We propose a four-quark structure for some of the excited states of heavy mesons containing a single charm or bottom quark. The four-quark wave functions are constructed based on a diquark-antidiquark form under the constraint that they…

High Energy Physics - Phenomenology · Physics 2015-06-22 Hungchong Kim , Myung-Ki Cheoun , Yongseok Oh

We have investigated shapes and sizes of selected two- and four-quasiparticle \mbox{high-$K$} states in nobelium and rutherfordium isotopes within the microscopic-macroscopic model with the deformed Woods-Saxon potential. Excited nuclear…

Nuclear Theory · Physics 2020-06-04 M. Palczewski , P. Jachimowicz , M. Kowal

The excited states of charmonia are numerically investigated in quenched lattice QCD with improved gauge and Wilson fermion actions formulated on anisotropic lattices. Through a constrained curve fitting algorithm, the masses of the first…

High Energy Physics - Lattice · Physics 2008-07-18 Ying Chen , Chuan Liu , Yubin Liu , Jianping Ma , Jianbo Zhang

A continuum approach to the three valence-quark bound-state problem in quantum field theory, employing parametrisations of the necessary kernel elements, is used to compute the spectrum and Poincar\'e-covariant wave functions for all…

Nuclear Theory · Physics 2019-09-18 Chen Chen , Gastao Krein , Craig D. Roberts , Sebastian M. Schmidt , Jorge Segovia

Following the Non-Relativistic QCD approach we use a gauge invariant smearing method with factorization to measure the excitation energies for a heavy $Q\bar{Q}$ system on a $24^3\times 48$ lattice at $\beta=6.2$. The results come from…

High Energy Physics - Lattice · Physics 2011-04-20 S. M. Catterall , F. R. Devlin , I. T. Drummond , R. R. Horgan

We study positive and negative parity nucleons on the lattice using the chirally improved lattice Dirac operator. Our analysis is based on a set of three operators chi_i with the nucleon quantum numbers but in different representations of…

High Energy Physics - Phenomenology · Physics 2009-11-10 Dirk Broemmel , Peter Crompton , Christof Gattringer , Leonid Ya. Glozman , C. B. Lang , Stefan Schaefer , Andreas Schaefer
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