Energy- and charge-state-resolved spectrometry of tin laser-produced plasma using a retarding field energy analyzer

Publication date
DOI http://dx.doi.org/10.1007/s00340-022-07844-5
Reference L. Poirier, A.C. Lassise, Y. Mostafa, L. Behnke, N. Braaksma, L. Assink, R. Hoekstra and O.O. Versolato, Energy- and charge-state-resolved spectrometry of tin laser-produced plasma using a retarding field energy analyzer, Appl. Phys. B- Lasers O 128, (7), 135: 1-7 (2022)
Groups Ion Interactions, EUV Plasma Processes

We present a method to obtain the individual charge-state-dependent kinetic-energy distributions of tin ions emanating from a laser-produced plasma from their joint overlapping energy distributions measured by means of a retarding field energy analyzer (RFA). The method of extracting charge state specific parameters from the ion signals is described mathematically, and reinforced with experimental results. The absolute charge-state-resolved ion energy distributions is obtained from ns-pulse Nd:YAG-laser-produced microdroplet tin plasmas in a setting relevant for state-of-the-art extreme ultraviolet nanolithography