Efficient molecule discrimination in electron microscopy through an optimized orbital angular momentum sorter

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Abstract

We reformulate the single-molecule analysis in an electron microscope in terms of a quantum-state discrimination problem, and discuss its implementation through electron-beam shaping. Our approach relies on the use of new electron-optical elements to efficiently extract the "which-molecule"information from the state of each electron. The optimal observables are formally derived, and subsequently implemented by suitably designed phase elements in a generalized orbital angular momentum sorter. As a representative example, we simulate the discrimination between model proteins and benchmark the performance of the sorter against that of the best known real-space approach.

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Troiani, F., Rotunno, E., Frabboni, S., Ravelli, R. B. G., Peters, P. J., Karimi, E., & Grillo, V. (2020). Efficient molecule discrimination in electron microscopy through an optimized orbital angular momentum sorter. Physical Review A, 102(4). https://doi.org/10.1103/PhysRevA.102.043510

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