A plano–convex thick-lens velocity map imaging apparatus for direct, high resolution 3D momentum measurements of photoelectrons with ion time-of-flight coincidence

Since their inception, velocity map imaging (VMI) techniques have received continued interest in their expansion from 2D to 3D momentum measurements through either reconstructive or direct methods. Recently, much work has been devoted to the latter of these by relating electron time-of-flight (TOF)...

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Veröffentlicht in:Review of scientific instruments 2023-01, Vol.94 (1), p.013303-013303
Hauptverfasser: Davino, Michael, McManus, Edward, Helming, Nora G., Cheng, Chuan, Moǧol, Gönenç, Rodnova, Zhanna, Harrison, Geoffrey, Watson, Kevin, Weinacht, Thomas, Gibson, George N., Saule, Tobias, Trallero-Herrero, Carlos A.
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Sprache:eng
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Zusammenfassung:Since their inception, velocity map imaging (VMI) techniques have received continued interest in their expansion from 2D to 3D momentum measurements through either reconstructive or direct methods. Recently, much work has been devoted to the latter of these by relating electron time-of-flight (TOF) to the third momentum component. The challenge is having a timing resolution sufficient to resolve the structure in the narrow (
ISSN:0034-6748
1089-7623
DOI:10.1063/5.0129900