Phase Transitions and Critical Phenomena, Volume 19
Academic Press, Sep 21, 2000 - Science - 498 pages
The field of phase transitions and critical phenomena continues to be active in research, producing a steady stream of interesting and fruitful results. It has moved into a central place in condensed matter studies.
Statistical physics, and more specifically, the theory of transitions between states of matter, more or less defines what we know about 'everyday' matter and its transformations.
The major aim of this serial is to provide review articles that can serve as standard references for research workers in the field, and for graduate students and others wishing to obtain reliable information on important recent developments.
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algebra ASEP behaviour Bethe ansatz boundary conditions boundary density boundary fields bulk calculation chain conditional probability configuration consider correlation functions corresponding counterterm decay defined density profile derivation diffusion diffusion-limited dimension discussed disorder distance divergences domain wall Doussal energy gap equations of motion equilibrium equivalent exact expansion expectation value exponential factor fermion finite fixed point fluctuations free-fermion given Glauber dynamics Heisenberg Hence hopping rates infinite instanton integral interaction Ising model lattice leads Lett limit master equation mean-field MOPE coefficient nontrivial obtained one-dimensional one-loop order operator pair annihilation parameters particle number particle systems Pauli matrices perturbation phase diagram phase transition Phys physical polymer quantum Hamiltonian random walk relation renormalization group result scaling Schütz Section self-avoiding shock similarity transformation solution Spohn stationary distribution stochastic processes subtraction symmetric exclusion process symmetry tethered membranes transfer matrix two-loop vector velocity Wiese and David yields