paper

Estimating Evaporation Fields and Specific Heats Through Atom Probe Tomography

arXiv:2008.01838

Abstract

Estimations of evaporation field values in atom probe tomography (APT) literature are sparse despite their importance in the reconstruction and data analysis process. This work describes a straightforward method for estimating the zero-barrier evaporation field () that uses the measured voltage vs. laser pulse energy for a constant evaporation rate. This estimate depends on the sample radius of curvature and its specific heat (). If a similar measurement is made of the measured voltage vs. base temperature for a fixed evaporation rate, direct extraction of the material's can be made, leaving only the sample radius of curvature as an input parameter. The method is applied to extract from a previously published voltage vs. laser pulse energy dataset for CdTe (); furthermore, using the published voltage vs. base-temperature sweep of CdTe permits extraction of a specific heat ( at ) in good agreement with the literature ( at ). The method is then applied to the previously uncharacterized material tris[2-phenylpyridinato-C2,N]iridium(III) (), yielding and ; this is much lower than most materials characterized with APT to date.

5 pages, 2 figures, submitted to Applied Physics Letters

Estimating Evaporation Fields and Specific Heats Through Atom Probe Tomography · wovepaper