A novel device that can be used as a tunable support-free phase plate for transmission electron microscopy of weakly scattering specimens is described. The device relies on the generation of a controlled phase shift by the magnetic field of a segment of current-carrying wire that is oriented parallel or antiparallel to the electron beam. The validity of the concept is established using both experimental electron holographic measurements and a theoretical model based on Ampere's law. Computer simulations are used to illustrate the resulting contrast enhancement for studies of biological cells and macromolecules.
Tunable Ampere phase plate for low dose imaging of biomolecular complexes / Tavabi, A. H.; Beleggia, M.; Migunov, V.; Savenko, A.; Oktem, O.; Dunin-Borkowski, R. E.; Pozzi, G.. - In: SCIENTIFIC REPORTS. - ISSN 2045-2322. - 8:1(2018), pp. 1-5. [10.1038/s41598-018-23100-3]
Tunable Ampere phase plate for low dose imaging of biomolecular complexes
Beleggia M.;
2018
Abstract
A novel device that can be used as a tunable support-free phase plate for transmission electron microscopy of weakly scattering specimens is described. The device relies on the generation of a controlled phase shift by the magnetic field of a segment of current-carrying wire that is oriented parallel or antiparallel to the electron beam. The validity of the concept is established using both experimental electron holographic measurements and a theoretical model based on Ampere's law. Computer simulations are used to illustrate the resulting contrast enhancement for studies of biological cells and macromolecules.File | Dimensione | Formato | |
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