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Titlebook: Microscale and Nanoscale Heat Transfer; Sebastian Volz Book 2007 Springer-Verlag Berlin Heidelberg 2007 Condensed matter.Nanoscience.Trans

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Molecular Dynamics, that matter. Molecular dynamics can only be used to study heat transfer by phonons, i.e., vibrations of the atomic lattice. It therefore only applies to dielectric materials, i.e., electrical insulators and semiconductors, in which the concentration of free electrons in the lattice is low enough to
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Scanning Thermal Microscopy,cific investigative methods for studying phenomena or properties in many areas of science. This Chapter is concerned with a whole range of methods based on near-field microscopy and developed for the study of micro- and nanoheat transfer. Section 1 describes the working principles of various near-fi
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Hybrid Techniquesand Multipurpose Microscopes,an be exploited, while Sect. 2 uses a 3D model to illustrate the main features of this kind of microscopy, describing the phenomenon of super-resolution common to all near-field imaging techniques. Section 3 then discusses several hybrid microscopes and Sect. 4 describes the prospects for a techniqu
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,Investigation of Short-Time Heat Transfer Effects by an Optical Pump–Probe Method,ew nanoseconds, whether one is concerned with diffusion over short length scales or heat exchanges involving small volumes of matter. Optical methods are particularly well-suited to the study of small systems for various reasons:. In this context, the development of reliable and easy-to-use femtosec
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978-3-642-07158-4Springer-Verlag Berlin Heidelberg 2007
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Microscale and Nanoscale Heat Transfer978-3-540-36057-5Series ISSN 0303-4216 Series E-ISSN 1437-0859
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Hybrid Techniquesand Multipurpose Microscopes,an be exploited, while Sect. 2 uses a 3D model to illustrate the main features of this kind of microscopy, describing the phenomenon of super-resolution common to all near-field imaging techniques. Section 3 then discusses several hybrid microscopes and Sect. 4 describes the prospects for a technique that is still in its infancy.
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