Abstract

“Quantum Chromodynamics” or “QCD” (in analogy with Quantum Electrodynamics), is an effervescent growing field, which presents concepts on the quark-gluon interaction of hadrons, quark confinement, asymptotic freedom, heavy quark symmetry, variation of spin and mass of hadrons, effective field theory, the quark-gluon plasma, strange quark matter and color superconducting phases of matter among a horde of others. Even though many of the cordial inquiries of QCD have confronted us for decades, we now have within our clutches, various unparalleled prospects for deep-seated progress. Contemporary evolutions in computational technology, lattice calculations, continuum model building, accelerator technology and design have led us to the probe into the insights of QCD and the capacity to elucidate non-perturbative QCD quantitatively. The present manuscript provides an insight of this theory and how it intrinsically stands as a candidature for strong interaction phenomenology.

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