Structure of Nucleon Excited States from Lattice QCD

Structure of Nucleon Excited States from Lattice QCD

Author
Finn M. Stokes
Publisher
Springer International Publishing
Language
English
Edition
1st ed. 2019
Year
2019
Page
XIII, 237
ISBN
978-3-030-25721-7,978-3-030-25722-4
File Type
pdf
File Size
10.3 MiB

Quantum Chromodynamics (QCD) describes the interactions between elementary quarks and gluons as they compose the nucleons at the heart of atomic structure. The interactions give rise to complexity that can only be examined via numerical simulations on supercomputers. This work provides an introduction to the numerical simulations of lattice QCD and establishes new formalisms relevant to understanding the structure of nucleons and their excited states. The research opens with an examination of the non-trivial QCD vacuum and the emergence of “centre domains.” The focus then turns to establishing a novel Parity-Expanded Variational Analysis (PEVA) technique solving the important problem of isolating baryon states moving with finite momentum. This seminal work provides a foundation for future calculations of baryon properties. Implementation of the PEVA formalism discloses important systematic errors in conventional calculations and reveals the structure of nucleon excited states from the first principles of QCD for the first time.

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