Acceleration of particles from the interaction of ultraintense laser pulses up to 5 × 10 21 W cm − 2 with thin foils is investigated experimentally. The electron beam parameters varied with decreasing spot size, not just laser intensity, resulting in reduced temperatures and divergence. In particular, the temperature saturated due to insufficient acceleration length in the tightly focused spot. These dependencies affected the sheath-accelerated protons, which showed poorer spot-size scaling than widely used scaling laws. It is therefore shown that maximizing laser intensity by using very small foci has reducing returns for some applications
The influence of irradiated spot size on laser energy coupling to electrons, and subsequently to pro...
The interaction of ultraintense laser pulses with solids is largely affected by the plasma gradient ...
The interaction of ultraintense laser pulses with solids is largely affected by the plasma gradient ...
Acceleration of particles from the interaction of ultra-intense laser pulses up to $5\times10^{21}$ ...
The behaviour of high power laser-plasma interaction from solid targets, and the resultant ion gener...
The behaviour of high power laser-plasma interaction from solid targets, and the resultant ion gener...
The behaviour of high power laser-plasma interaction from solid targets, and the resultant ion gener...
The behaviour of high power laser-plasma interaction from solid targets, and the resultant ion gener...
Previously held under moratorium from 12th April 2022 until 12th April 2023.This thesis reports on e...
Degree awarded in 2022.Previously held under moratorium from 12th April 2022 until 12th April 2023.T...
Degree awarded in 2022.Previously held under moratorium from 12th April 2022 until 12th April 2023.T...
State-of-the-art high power laser facilities present numerous potential applications, including the ...
State-of-the-art high power laser facilities present numerous potential applications, including the ...
We present an approach to modelling the effect of the laser focal spot size on the acceleration of p...
Abstract The interaction of ultraintense laser pulses with solids is largely affected by the plasma ...
The influence of irradiated spot size on laser energy coupling to electrons, and subsequently to pro...
The interaction of ultraintense laser pulses with solids is largely affected by the plasma gradient ...
The interaction of ultraintense laser pulses with solids is largely affected by the plasma gradient ...
Acceleration of particles from the interaction of ultra-intense laser pulses up to $5\times10^{21}$ ...
The behaviour of high power laser-plasma interaction from solid targets, and the resultant ion gener...
The behaviour of high power laser-plasma interaction from solid targets, and the resultant ion gener...
The behaviour of high power laser-plasma interaction from solid targets, and the resultant ion gener...
The behaviour of high power laser-plasma interaction from solid targets, and the resultant ion gener...
Previously held under moratorium from 12th April 2022 until 12th April 2023.This thesis reports on e...
Degree awarded in 2022.Previously held under moratorium from 12th April 2022 until 12th April 2023.T...
Degree awarded in 2022.Previously held under moratorium from 12th April 2022 until 12th April 2023.T...
State-of-the-art high power laser facilities present numerous potential applications, including the ...
State-of-the-art high power laser facilities present numerous potential applications, including the ...
We present an approach to modelling the effect of the laser focal spot size on the acceleration of p...
Abstract The interaction of ultraintense laser pulses with solids is largely affected by the plasma ...
The influence of irradiated spot size on laser energy coupling to electrons, and subsequently to pro...
The interaction of ultraintense laser pulses with solids is largely affected by the plasma gradient ...
The interaction of ultraintense laser pulses with solids is largely affected by the plasma gradient ...