PRL: Real-Time Observation of Frustrated Ultrafast Recovery from Ionization in Nanostructured SiO2 Using Laser-Driven Accelerators.
These results open a direct route to tracking how low-level processes can underpin macroscopically observed phenomena.
https://t.co/CoKqY2EP82
Dangerous beauty for eyes! The reddish colours are diffracted beams from the diffraction grating. The actual laser is green. The scattered green is from the stray beams. This is the heart of the TARANIS laser. TARANIS has a brain, a small box, and legs. We call them LEG1 and LEG2
Planning on wrecking my feet and running 60 miles in April for Pancreatic cancer action, in memory of my dad Robin. Hoping this will give me the kick I need to get half marathon ready! Any support is greatly appreciated! https://t.co/OK9bsyTs4c
PR Research: Attosecond pulse isolation via intense laser field synthesis.
By suppression of the surrounding pulses in the train, it is possible to generate a single isolated attosecond pulse without compromising the resultant intensity.
https://t.co/hBObyuPvrM
Attosecond pulse isolation via intense laser field synthesis, C. R. J. Fitzpatrick, J. P. Kennedy, B. Dromey, and M. Yeung @QUBMathsPhys#PlasmaPhysics https://t.co/RMf8wZfZM7
@RutherfordApLab@STFC_Matters Currently mingling amoungst the crowd are 3 Secret Judges… 🕵️♀️
Finishing off day 2 of #HPLmeeting with the student poster competition! 🎖️
Winners will be announced tonight! 😬🤞