Description

Book Synopsis
Ultrafast science has long been limited to the investigation of molecular processes. Over the past 10 years investigation of ultrafast processes has expanded to material science, including aspects relevant to the solid-state such as excitation of electrons in band structures and collective phonon excitation. Specific probes for electronic and structural reorganization, such as X-ray diffraction and ARPES, have been advanced. Furthermore, experimental techniques including XFEL science, THz science and various pump–probe methods, as well as the theoretical understanding of ultrafast, out-of-equilibrium and multiscale processes driven by light or THz excitation, have seen rapid development. This volume brings together a complementarity of internationally-leading experimental material scientists and theoreticians in this field to explore and exchange their ideas about the key aspects of ultrafast science, designing new ways to control materials and understanding transformation processes. The topics covered include: Material science: ultrafast transformation, electron-phonon coupling, multi-scale aspects Theory of out of equilibrium light-induced phenomena Optical excitation processes THz and laser field excitation processes

Table of Contents
Material science: ultrafast transformation, electron-phonon coupling, multi-scale aspects;Theory of out of equilibrium light-induced phenomena;Optical excitation processes;THz and laser field excitation processes

From Optical to THz Control of Materials: Faraday

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A Hardback by Royal Society of Chemistry

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    View other formats and editions of From Optical to THz Control of Materials: Faraday by Royal Society of Chemistry

    Publisher: Royal Society of Chemistry
    Publication Date: 14/10/2022
    ISBN13: 9781839166945, 978-1839166945
    ISBN10: 1839166940

    Description

    Book Synopsis
    Ultrafast science has long been limited to the investigation of molecular processes. Over the past 10 years investigation of ultrafast processes has expanded to material science, including aspects relevant to the solid-state such as excitation of electrons in band structures and collective phonon excitation. Specific probes for electronic and structural reorganization, such as X-ray diffraction and ARPES, have been advanced. Furthermore, experimental techniques including XFEL science, THz science and various pump–probe methods, as well as the theoretical understanding of ultrafast, out-of-equilibrium and multiscale processes driven by light or THz excitation, have seen rapid development. This volume brings together a complementarity of internationally-leading experimental material scientists and theoreticians in this field to explore and exchange their ideas about the key aspects of ultrafast science, designing new ways to control materials and understanding transformation processes. The topics covered include: Material science: ultrafast transformation, electron-phonon coupling, multi-scale aspects Theory of out of equilibrium light-induced phenomena Optical excitation processes THz and laser field excitation processes

    Table of Contents
    Material science: ultrafast transformation, electron-phonon coupling, multi-scale aspects;Theory of out of equilibrium light-induced phenomena;Optical excitation processes;THz and laser field excitation processes

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