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- W2181321592 abstract "This chapter discusses a number of phenomena, in which boundary scattering plays an important role in the behavior of quantum liquids and solids. The phenomena are generally characterized by the mean free path being comparable to other characteristic lengths. To illustrate the limitations of hydrodynamics and to introduce the concepts of fluid slip and Knudsen flow, an elementary example, the motion of a spherical object through a viscous medium is considered. The chapter introduces the slip approximation and applies it to a variety of flow problems of experimental interest. The slip length is calculated microscopically, for both classical and quantum systems, starting from a Boltzmann equation for the particle distribution function. Flow at arbitrary Knudsen numbers is presented in the chapter and frequencies comparable to or greater than the microscopic relaxation rates are considered. The role of different types of boundary scattering is discussed and the comparison with experiment is carried out in the chapter. The main emphasis is on the quantum fluids 3He and 4He as well as mixtures of 3He and 4He." @default.
- W2181321592 created "2016-06-24" @default.
- W2181321592 creator A5064287340 @default.
- W2181321592 date "1987-01-01" @default.
- W2181321592 modified "2023-09-23" @default.
- W2181321592 title "Chapter 2: Long Mean Free Paths in Quantum Fluids" @default.
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- W2181321592 doi "https://doi.org/10.1016/s0079-6417(08)60031-1" @default.
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