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Application of Integrable Systems to Phase Transitions (Hardcover, 2013 ed.): C.B. Wang Application of Integrable Systems to Phase Transitions (Hardcover, 2013 ed.)
C.B. Wang
R3,048 R1,877 Discovery Miles 18 770 Save R1,171 (38%) Ships in 10 - 15 working days

The eigenvalue densities in various matrix models in quantum chromodynamics (QCD) are ultimately unified in this book by a unified model derived from the integrable systems. Many new density models and free energy functions are consequently solved and presented. The phase transition models including critical phenomena with fractional power-law for the discontinuities of the free energies in the matrix models are systematically classified by means of a clear and rigorous mathematical demonstration. The methods here will stimulate new research directions such as the important Seiberg-Witten differential in Seiberg-Witten theory for solving the mass gap problem in quantum Yang-Mills theory. The formulations and results will benefit researchers and students in the fields of phase transitions, integrable systems, matrix models and Seiberg-Witten theory.

Application of Integrable Systems to Phase Transitions (Paperback, Softcover reprint of the original 1st ed. 2013): C.B. Wang Application of Integrable Systems to Phase Transitions (Paperback, Softcover reprint of the original 1st ed. 2013)
C.B. Wang
R1,973 Discovery Miles 19 730 Ships in 18 - 22 working days

The eigenvalue densities in various matrix models in quantum chromodynamics (QCD) are ultimately unified in this book by a unified model derived from the integrable systems. Many new density models and free energy functions are consequently solved and presented. The phase transition models including critical phenomena with fractional power-law for the discontinuities of the free energies in the matrix models are systematically classified by means of a clear and rigorous mathematical demonstration. The methods here will stimulate new research directions such as the important Seiberg-Witten differential in Seiberg-Witten theory for solving the mass gap problem in quantum Yang-Mills theory. The formulations and results will benefit researchers and students in the fields of phase transitions, integrable systems, matrix models and Seiberg-Witten theory.

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