Enhanced laser intensity and ion acceleration due to self-focusing in relativistically transparent ultrathin targetsTimothy P. Frazer, P. McKenna, Hang Liu et al.|Physical Review Research|2020Cited by 13
High order modes of intense second harmonic light produced from a plasma apertureEwan F. J. Bacon, P. McKenna, M. King et al.|Matter and Radiation at Extremes|2022Cited by 10
Radiation Pressure-Driven Plasma Surface Dynamics in Ultra-Intense Laser Pulse Interactions with Ultra-Thin FoilsBruno González-Izquierdo, P. McKenna, R. Capdessus et al.|Applied Sciences|2018Cited by 9
Self-Referencing Spectral Interferometric Probing of the Onset Time of Relativistic Transparency in Intense Laser-Foil InteractionsS. D. R. Williamson, P. McKenna, R. Wilson et al.|Physical Review Applied|2020Cited by 8
High-order mode structure and spectral interferometry in ultrathin foils: underpinning physics of transparency-enhanced ion accelerationP. McKenna, R. J. Gray, M. King et al.|Unknown|2021Cited by 0