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Characterization of a time-resolved electron microscope with a Schottky field emission gun
Author(s) -
Pavel K. Olshin,
Marcel Drabbels,
Ulrich J. Lorenz
Publication year - 2020
Publication title -
structural dynamics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.415
H-Index - 29
ISSN - 2329-7778
DOI - 10.1063/4.0000034
Subject(s) - photocathode , field emission gun , field electron emission , electron gun , brightness , microscope , electron , optics , common emitter , ultrashort pulse , schottky effect , field (mathematics) , optoelectronics , materials science , schottky diode , physics , nanotechnology , cathode ray , transmission electron microscopy , laser , mathematics , quantum mechanics , diode , pure mathematics
The rapid growth of the field of time-resolved and ultrafast electron microscopy has been accompanied by the active development of new instrumentation. Recently, time-resolved microscopes equipped with a field emission gun have been introduced, demonstrating great potential for experiments that benefit from the high brightness and coherence of the electron source. Here, we describe a straightforward design of a time-resolved transmission electron microscope with a Schottky field emission gun and characterize its performance. At the same time, our design gives us the flexibility to alternatively operate the instrument as if it was equipped with a flat metal photocathode. We can, thus, effectively choose to sacrifice brightness in order to obtain pulses with vastly larger numbers of electrons than from the emitter if for a given application the number of electrons is a crucial figure of merit. We believe that our straightforward and flexible design will be of great practical relevance to researchers wishing to enter the field.

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