This monograph is a fundamental reference for scientists and engineers who encounter spin processes in their work. The author, Ilya Kuprov, derives the concept of spin from basic symmetries and gives an overview of theoretical and computational aspects of spin dynamics: from Dirac equation and spin Hamiltonian, through coherent evolution and relaxation theories, to quantum optimal control, and all the way to practical implementation advice for parallel computers.
This monograph is a fundamental reference for scientists and engineers who encounter spin processes in their work. The author, Ilya Kuprov, derives the concept of spin from basic symmetries and gives an overview of theoretical and computational aspects of spin dynamics: from Dirac equation and spin Hamiltonian, through coherent evolution and relaxation theories, to quantum optimal control, and all the way to practical implementation advice for parallel computers.
Gives an overview of theoretical and computational foundations of spin dynamics Presents major formalisms of spin dynamics using systematic and consistent notation Builds the mathematical framework of spin dynamics carefully from the ground up
ILYA KUPROV
Magnetic Resonance Theoretical Spin Dynamics Magnetic Resonance Imaging Spin Chemistry Electron Spin Resonance Spin Interaction Computational Spin Dynamics Spin dynamics simulation