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Related papers: Effective Field Theory in Nuclear Physics

200 papers

Chiral effective field theory is being developed into a precision tool for low-energy nuclear physics. I review the state of the art in the two-nucleon sector, discuss applications to few-nucleon systems and address challenges that will…

Nuclear Theory · Physics 2019-08-27 E. Epelbaum

Recent progress in Lorentz-covariant quantum field theories of the nuclear many-body problem (quantum hadrodynamics or QHD) is discussed. The effective field theory studied here contains nucleons, pions, isoscalar scalar (\sigma) and vector…

Nuclear Theory · Physics 2017-01-25 Brian D. Serot

Recent progress in Lorentz-covariant quantum field theories of the nuclear many-body problem (quantum hadrodynamics or QHD) is discussed. The effective field theory studied here contains nucleons, pions, isoscalar scalar (\sigma) and vector…

Nuclear Theory · Physics 2007-05-23 Brian D. Serot

Electron beams provide important probes and constraints for nuclear astrophysics. This is especially exciting at energies within the regime of chiral effective field theory (EFT), which provides a systematic expansion for nuclear forces and…

Nuclear Theory · Physics 2015-06-17 A. Schwenk

We illustrate how effective field theories work in nuclear physics by using an effective Lagrangian in which all other degrees of freedom than the nucleonic one have been integrated out to calculate the low-energy properties of two-nucleon…

High Energy Physics - Phenomenology · Physics 2008-11-26 Tae-Sun Park , Kuniharu Kubodera , Dong-Pil Min , Mannque Rho

The US neutrino community gathered at the Workshop on the Intermediate Neutrino Program (WINP) at Brookhaven National Laboratory February 4-6, 2015 to explore opportunities in neutrino physics over the next five to ten years. Scientists…

High Energy Physics - Experiment · Physics 2015-04-03 C. Adams , J. R. Alonso , A. M. Ankowski , J. A. Asaadi , J. Ashenfelter , S. N. Axani , K. Babu , C. Backhouse , H. R. Band , P. S. Barbeau , N. Barros , A. Bernstein , M. Betancourt , M. Bishai , E. Blucher , J. Bouffard , N. Bowden , S. Brice , C. Bryan , L. Camilleri , J. Cao , J. Carlson , R. E. Carr , A. Chatterjee , M. Chen , S. Chen , M. Chiu , E. D. Church , J. I. Collar , G. Collin , J. M. Conrad , M. R. Convery , R. L. Cooper , D. Cowen , H. Davoudiasl , A. De Gouvea , D. J. Dean , G. Deichert , F. Descamps , T. DeYoung , M. V. Diwan , Z. Djurcic , M. J. Dolinski , J. Dolph , B. Donnelly , D. A. Dwyer , S. Dytman , Y. Efremenko , L. L. Everett , A. Fava , E. Figueroa-Feliciano , B. Fleming , A. Friedland , B. K. Fujikawa , T. K. Gaisser , M. Galeazzi , D. C. Galehouse , A. Galindo-Uribarri , G. T. Garvey , S. Gautam , K. E. Gilje , M. Gonzalez-Garcia , M. C. Goodman , H. Gordon , E. Gramellini , M. P. Green , A. Guglielmi , R. W. Hackenburg , A. Hackenburg , F. Halzen , K. Han , S. Hans , D. Harris , K. M. Heeger , M. Herman , R. Hill , A. Holin , P. Huber , D. E. Jaffe , R. A. Johnson , J. Joshi , G. Karagiorgi , L. J. Kaufman , B. Kayser , S. H. Kettell , B. J. Kirby , J. R. Klein , Yu. G. Kolomensky , R. M. Kriske , C. E. Lane , T. J. Langford , A. Lankford , K. Lau , J. G. Learned , J. Ling , J. M. Link , D. Lissauer , L. Littenberg , B. R. Littlejohn , S. Lockwitz , M. Lokajicek , W. C. Louis , K. Luk , J. Lykken , W. J. Marciano , J. Maricic , D. M. Markoff , D. A. Martinez Caicedo , C. Mauger , K. Mavrokoridis , E. McCluskey , D. McKeen , R. McKeown , G. Mills , I. Mocioiu , B. Monreal , M. R. Mooney , J. G. Morfin , P. Mumm , J. Napolitano , R. Neilson , J. K. Nelson , M. Nessi , D. Norcini , F. Nova , D. R. Nygren , G. D. Orebi Gann , O. Palamara , Z. Parsa , R. Patterson , P. Paul , A. Pocar , X. Qian , J. L. Raaf , R. Rameika , G. Ranucci , H. Ray , D. Reyna , G. C. Rich , P. Rodrigues , E. Romero Romero , R. Rosero , S. D. Rountree , B. Rybolt , M. C. Sanchez , G. Santucci , D. Schmitz , K. Scholberg , D. Seckel , M. Shaevitz , R. Shrock , M. B. Smy , M. Soderberg , A. Sonzogni , A. B. Sousa , J. Spitz , J. M. St. John , J. Stewart , J. B. Strait , G. Sullivan , R. Svoboda , A. M. Szelc , R. Tayloe , M. A. Thomson , M. Toups , A. Vacheret , M. Vagins , R. G. Van de Water , R. B. Vogelaar , M. Weber , W. Weng , M. Wetstein , C. White , B. R. White , L. Whitehead , D. W. Whittington , M. J. Wilking , R. J. Wilson , P. Wilson , D. Winklehner , D. R. Winn , E. Worcester , L. Yang , M. Yeh , Z. W. Yokley , J. Yoo , B. Yu , J. Yu , C. Zhang

This review gives an overview of effective field theory (EFT) as applied at finite density, with a focus on nuclear many-body systems. Uniform systems with short-range interactions illustrate the ingredients and virtues of many-body EFT and…

Nuclear Theory · Physics 2009-11-19 R. J. Furnstahl , G. Rupak , T. Schaefer

These lectures provide an introduction to the basic ideas and methods of Effective Field Theory, and a description of a few interesting phenomenological applications in particle physics. The main conceptual foundations are discussed in…

High Energy Physics - Phenomenology · Physics 2007-05-23 A. Pich

Low-energy nuclear weak-interaction processes play important roles in many astrophysical contexts, and effective field theory is believed to be a highly useful framework for describing these processes in a model-independent manner. I…

Nuclear Theory · Physics 2007-05-23 K. Kubodera

In this lecture series, I present the recent progress in our understanding of nuclear forces in terms of chiral effective field theory.

Nuclear Theory · Physics 2007-05-23 R. Machleidt

Effective field theory (EFT) is generalized to investigate the rotational motion of triaxially deformed even-even nuclei. A Hamiltonian, called the triaxial rotor model (TRM), is obtained up to next-to-leading order (NLO) within the EFT…

Nuclear Theory · Physics 2017-11-22 Q. B. Chen , N. Kaiser , Ulf-G. Meißner , J. Meng

This is an extended version of the note taken by the first author (W.-G.P.) on a lecture given by the second author (M.R.) as a first part of the series on "Hadronic Matter Under Extreme Conditions," the principal theme of the WCU-Hanyang…

Nuclear Theory · Physics 2011-09-28 Won-Gi Paeng , Mannque Rho

We present a simple introduction to the techniques of effective field theory (EFT) and their application to QCD. For problems with more than one energy scale, the EFT approach is a useful alternative to more traditional model-building…

Nuclear Theory · Physics 2007-05-23 U. van Kolck , L. J. Abu-Raddad , D. M. Cardamone

A polarized $ep/eA$ collider (Electron--Ion Collider, or EIC), with polarized proton and light-ion beams and unpolarized heavy-ion beams with a variable center--of--mass energy $\sqrt{s} \sim 20$ to $\sim100$~GeV (upgradable to $\sim 150$…

Electromagnetic (EM) interactions are incorporated in a recently proposed effective field theory of the nuclear many-body problem. Earlier work with this effective theory exhibited EM couplings that are correct only to lowest order in both…

Nuclear Theory · Physics 2008-11-26 Brian D. Serot

Long term plans for the investigation of the quark and gluon structure of matter have for some time focussed on the possibility of an electron-ion collider, with the nuclear physics communities associated with JLab and BNL being…

High Energy Physics - Experiment · Physics 2009-07-30 Anthony W. Thomas

The Continuous Electron Beam Accelerator Facility (CEBAF) and associated experimental equipment at Jefferson Lab comprise a unique facility for experimental nuclear physics. This facility is presently being upgraded, which will enable a new…

Accelerator Physics · Physics 2013-03-27 R. D. McKeown

The study of nuclei predates by many years the theory of quantum chromodynamics. More recently, effective field theories have been used in nuclear physics to ``cross the border'' from QCD to a nuclear theory. We are now entering the second…

These are the proceedings of the workshop "HadAtom03," held at the European Centre for Theoretical Nuclear Physics and Related Studies (ECT*), Trento (Italy), October 13 - 17, 2003. The main topics discussed at the workshop were the physics…

High Energy Physics - Phenomenology · Physics 2007-05-23 J. Gasser , A. Rusetsky , J. Schacher

Lattice effective field theory applies the principles of effective field theory in a lattice framework where space and time are discretized. Nucleons are placed on the lattice sites, and the interactions are tuned to replicate the observed…

Nuclear Theory · Physics 2025-10-07 Dean Lee