2019
DOI: 10.1007/978-3-030-00069-1_8
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High-Speed Electron Microscopy

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Cited by 3 publications
(5 citation statements)
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“…Additionally, the sample is illuminated with a laser pulse referred to as the sample pump beam, with a controlled delay time relative to the electron probe pulse. [288][289][290]308,309 In both single-shot and stroboscopic mode, the TEM column is modified to allow the time-resolved laser access to both electron gun and specimen. However, the employed laser system in single-shot mode and stroboscopic modes are significantly different.…”
Section: Exploring Reversible and Metastable Dynamics Of Quantum Exci...mentioning
confidence: 99%
See 3 more Smart Citations
“…Additionally, the sample is illuminated with a laser pulse referred to as the sample pump beam, with a controlled delay time relative to the electron probe pulse. [288][289][290]308,309 In both single-shot and stroboscopic mode, the TEM column is modified to allow the time-resolved laser access to both electron gun and specimen. However, the employed laser system in single-shot mode and stroboscopic modes are significantly different.…”
Section: Exploring Reversible and Metastable Dynamics Of Quantum Exci...mentioning
confidence: 99%
“…The evolution of time-resolved TEM is directly linked to instrumentation advances over the past decade. One major breakthrough in the development of time-resolved TEM came with the use of ultrashort pulsed laser sources enabling sub-nanometer/femtosecond spatiotemporal resolution. In addition, time-resolved TEM has benefited significantly from the same instrumental advances discussed in the previous sections (aberration correctors, direct electron detectors). Understanding the dynamics of involved elementary processes down to the atomic and molecular level had been impossible before the early 2000s and the pioneering work of O. Bastanjoglo at TU Berlin …”
Section: Exploring Reversible and Metastable Dynamics Of Quantum Exci...mentioning
confidence: 99%
See 2 more Smart Citations
“…Going to cryo temperatures, however, does not solve other problems such as observing chemical reactions under reaction conditions. Although the ultrafast electron microscopy method (Zewail, 2010; Campbell et al, 2019) has not achieved atomic-resolution yet, future successful advances in developing atomic-resolution ultrafast electron microscopy would allow us to examine chemical reactions on solid surfaces with significantly suppressed electron-beam-induced effects, to study crystal nucleation and growth processes in liquid environments, to measure atomic diffusion processes at desired sample temperatures, or to explore the atomic configurations of biological molecules and how they control the functions of biological systems. The arrival of atomic-resolution femtosecond or attosecond electron microscopy (if it is achievable) will unlock the mysteries of the dynamic world of matter.…”
Section: Future Prospectsmentioning
confidence: 99%