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- W2400554592 abstract "This paper presents an overview of the Fokker-Planck formalism for non-biological magnetic resonance simulations, describes its existing applications and proposes some novel ones. The most attractive feature of Fokker-Planck theory compared to the commonly used Liouville - von Neumann equation is that, for all relevant types of spatial dynamics (spinning, diffusion, flow, etc.), the corresponding Fokker-Planck Hamiltonian is time-independent. Many difficult NMR, EPR and MRI simulation problems (multiple rotation NMR, ultrafast NMR, gradient-based zero-quantum filters, diffusion and flow NMR, off-resonance soft microwave pulses in EPR, spin-spin coupling effects in MRI, etc.) are simplified significantly in Fokker-Planck space. The paper also summarises the author's experiences with writing and using the corresponding modules of the Spinach library - the methods described below have enabled a large variety of simulations previously considered too complicated for routine practical use." @default.
- W2400554592 created "2016-06-24" @default.
- W2400554592 creator A5035851986 @default.
- W2400554592 date "2016-09-01" @default.
- W2400554592 modified "2023-10-16" @default.
- W2400554592 title "Fokker-Planck formalism in magnetic resonance simulations" @default.
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- W2400554592 doi "https://doi.org/10.1016/j.jmr.2016.07.005" @default.
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