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Theory Of Scattering For Quasifree Particles, A (Hardcover): Ray F. Streater Theory Of Scattering For Quasifree Particles, A (Hardcover)
Ray F. Streater
R1,762 Discovery Miles 17 620 Ships in 12 - 17 working days

In this book, the author presents the theory of quasifree quantum fields and argues that they could provide non-zero scattering for some particles. The free-field representation of the quantised transverse electromagnetic field is not closed in the weak*-topology. Its closure contains soliton-anti-soliton pairs as limits of two-photon states as time goes to infinity, and the overlap probability can be computed using Uhlmann's prescription. There are no free parameters: the probability is determined with no requirement to specify any coupling constant. All cases of the Shale transforms of the free field of the form + , where is not in the one-particle space, are treated in the book. There remain the cases of the Shale transforms of the form T , where T is a symplectic map on the one-particle space, not near the identity.

Statistical Dynamics: A Stochastic Approach To Nonequilibrium Thermodynamics (2nd Edition) (Paperback, 2nd Revised edition):... Statistical Dynamics: A Stochastic Approach To Nonequilibrium Thermodynamics (2nd Edition) (Paperback, 2nd Revised edition)
Ray F. Streater
R1,841 Discovery Miles 18 410 Ships in 12 - 17 working days

How can one construct dynamical systems obeying the first and second laws of thermodynamics: mean energy is conserved and entropy increases with time? This book answers the question for classical probability (Part I) and quantum probability (Part II). A novel feature is the introduction of heat particles which supply thermal noise and represent the kinetic energy of the molecules. When applied to chemical reactions, the theory leads to the usual nonlinear reaction-diffusion equations as well as modifications of them. These can exhibit oscillations, or can converge to equilibrium. In this second edition, the text is simplified in parts and the bibliography has been expanded. The main difference is the addition of two new chapters; in the first, classical fluid dynamics is introduced. A lattice model is developed, which in the continuum limit gives us the Euler equations. The five Navier???Stokes equations are also presented, modified by a diffusion term in the continuity equation. The second addition is in the last chapter, which now includes estimation theory, both classical and quantum, using information geometry.

Statistical Dynamics: A Stochastic Approach To Nonequilibrium Thermodynamics (2nd Edition) (Hardcover, 2nd Revised ed.): Ray F.... Statistical Dynamics: A Stochastic Approach To Nonequilibrium Thermodynamics (2nd Edition) (Hardcover, 2nd Revised ed.)
Ray F. Streater
R2,896 Discovery Miles 28 960 Ships in 12 - 17 working days

How can one construct dynamical systems obeying the first and second laws of thermodynamics: mean energy is conserved and entropy increases with time? This book answers the question for classical probability (Part I) and quantum probability (Part II). A novel feature is the introduction of heat particles which supply thermal noise and represent the kinetic energy of the molecules. When applied to chemical reactions, the theory leads to the usual nonlinear reaction-diffusion equations as well as modifications of them. These can exhibit oscillations, or can converge to equilibrium. In this second edition, the text is simplified in parts and the bibliography has been expanded. The main difference is the addition of two new chapters; in the first, classical fluid dynamics is introduced. A lattice model is developed, which in the continuum limit gives us the Euler equations. The five Navier???Stokes equations are also presented, modified by a diffusion term in the continuity equation. The second addition is in the last chapter, which now includes estimation theory, both classical and quantum, using information geometry.

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