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Titlebook: Development of an Ultrafast Low-Energy Electron Diffraction Setup; Max Gulde Book 2015 Springer International Publishing Switzerland 2015

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發(fā)表于 2025-3-21 17:55:54 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱Development of an Ultrafast Low-Energy Electron Diffraction Setup
編輯Max Gulde
視頻videohttp://file.papertrans.cn/271/270021/270021.mp4
概述Winner of the Jan Peter Toennies Physics Prize, awarded by the University of G?ttingen, Germany.Provides a detailed description of the working principle of ultrafast low-energy electron diffraction (U
叢書名稱Springer Theses
圖書封面Titlebook: Development of an Ultrafast Low-Energy Electron Diffraction Setup;  Max Gulde Book 2015 Springer International Publishing Switzerland 2015
描述This book presents an Ultrafast Low-Energy Electron Diffraction (ULEED)?system?that reveals?ultrafast structural changes on the atomic scale.?The achievable temporal resolution in the low-energy regime is improved by several orders of magnitude and has enabled the melting of a highly-sensitive, molecularly thin layer of a polymer crystal to be resolved for the first time. This new experimental approach permits time-resolved structural investigations of systems that were previously partially or totally inaccessible, including?surfaces, interfaces and atomically thin films. It will?be?of fundamental importance for understanding the properties of nanomaterials?so as to?tailor their?properties.
出版日期Book 2015
關鍵詞Free-Standing Graphene; Low-energy Electron Diffraction; Observation of Polymer Melting; Prize-winning
版次1
doihttps://doi.org/10.1007/978-3-319-18561-3
isbn_softcover978-3-319-38696-6
isbn_ebook978-3-319-18561-3Series ISSN 2190-5053 Series E-ISSN 2190-5061
issn_series 2190-5053
copyrightSpringer International Publishing Switzerland 2015
The information of publication is updating

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沙發(fā)
發(fā)表于 2025-3-21 22:26:19 | 只看該作者
2190-5053 ng principle of ultrafast low-energy electron diffraction (UThis book presents an Ultrafast Low-Energy Electron Diffraction (ULEED)?system?that reveals?ultrafast structural changes on the atomic scale.?The achievable temporal resolution in the low-energy regime is improved by several orders of magni
板凳
發(fā)表于 2025-3-22 00:55:47 | 只看該作者
Book 2015ons of systems that were previously partially or totally inaccessible, including?surfaces, interfaces and atomically thin films. It will?be?of fundamental importance for understanding the properties of nanomaterials?so as to?tailor their?properties.
地板
發(fā)表于 2025-3-22 07:04:23 | 只看該作者
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發(fā)表于 2025-3-22 14:20:19 | 只看該作者
https://doi.org/10.1007/978-3-476-03194-5In this chapter, the potential of ultrafast LEED for investigations with atomic-scale resolution is discussed.
7#
發(fā)表于 2025-3-22 19:34:32 | 只看該作者
https://doi.org/10.1007/978-3-476-03194-5In this section, a numerical study of an electron source with tip-based geometry is provided. First, a brief introduction to the employed finite element method (FEM) is given (Sect.?.). Next, the influence of the individual lens components with respect to focusability and temporal resolution of the electron pulse is simulated (Sect.?.).
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發(fā)表于 2025-3-23 02:55:22 | 只看該作者
https://doi.org/10.1007/978-3-476-00726-1This chapter describes the time-resolved structural analysis of an ultrathin polymer overlayer adsorbed on free-standing graphene by the previously introduced transmission ULEED setup.
10#
發(fā)表于 2025-3-23 06:58:40 | 只看該作者
Redegegenst?nde und RedegattungenThe work performed in the framework of this thesis comprises two main points, namely the development of an ultrafast LEED setup, based on a nanometric pulsed electron source and its application to resolve the superstructure dynamics of an atomically thin polymer film adsorbed on free-standing graphene.
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