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Biprism Electron Interferometry with a Single Atom Tip Source

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arxiv 1311.7323 v1 pith:J2V5COTD submitted 2013-11-28 physics.optics physics.atom-phquant-ph

Biprism Electron Interferometry with a Single Atom Tip Source

classification physics.optics physics.atom-phquant-ph
keywords biprismelectronfieldsourceatominterferometrymatterother
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Experiments with electron or ion matter waves require a coherent, monochromatic and long-term stable source with high brightness. These requirements are best fulfilled by single atom tip (SAT) field emitters. The performance of an iridium covered W(111) SAT is demonstrated and analyzed for electrons in a biprism interferometer. Furthermore we characterize the emission of the SAT in a separate field electron and field ion microscope and compare it with other emitter types. A new method is presented to fabricate the electrostatic charged biprism wire that separates and combines the matter wave. In contrast to other biprism interferometers the source and the biprism size are well defined within a few nanometers. The setup has direct applications in ion interferometry and Aharonov-Bohm physics.

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