We demonstrate experimentally the resonant excitation of plasma waves by trains of laser pulses. We also take an important first step to achieving an energy recovery plasma accelerator by showing that a plasma wave can be damped by an out-of-resonance trailing laser pulse. The measured laser wakefields are found to be in excellent agreement with analytical and numerical models of wakefield excitation in the linear regime. Our results indicate a promising direction for achieving highly controlled, GeV-scale laser-plasma accelerators operating at multikilohertz repetition rates
A method for generating large-amplitude nonlinear plasma waves, which uti-lizes an optimized train o...
Plasma wakefield acceleration (PWFA) is a novel acceleration technique with promising prospects for ...
A novel laser-plasma-based source of relativistic electrons is described. It involves a combination ...
We demonstrate experimentally the resonant excitation of plasma waves by trains of laser pulses. We ...
We demonstrate experimentally the resonant excitation of plasma waves by trains of laser pulses. We ...
I present work on three different techniques in order to contribute towards laser wakefield accelera...
The electric field in laser-driven plasma wakefield acceleration is orders of magnitude higher than ...
We present an outline of experiments being conducted at Oxford University on multiple-pulse, resonan...
This thesis presents results towards the realisation of high-repetition rate laser wakefield acceler...
Laser-driven plasma accelerators can generate accelerating gradients three orders of magnitude large...
In multi-pulse laser wakefield acceleration (MP-LWFA) a plasma wave is driven by a train of low-ener...
A method for generating large‐amplitude nonlinear plasma waves, which utilizes an optimized train of...
AbstractIn multi-pulse laser wakefield acceleration (MP-LWFA) a plasma wave is driven by a train of ...
A method for generating large‐amplitude nonlinear plasma waves, which utilizes an optimized train of...
he wakefield generated in a plasma by incoherently combining a large number of low energy laser puls...
A method for generating large-amplitude nonlinear plasma waves, which uti-lizes an optimized train o...
Plasma wakefield acceleration (PWFA) is a novel acceleration technique with promising prospects for ...
A novel laser-plasma-based source of relativistic electrons is described. It involves a combination ...
We demonstrate experimentally the resonant excitation of plasma waves by trains of laser pulses. We ...
We demonstrate experimentally the resonant excitation of plasma waves by trains of laser pulses. We ...
I present work on three different techniques in order to contribute towards laser wakefield accelera...
The electric field in laser-driven plasma wakefield acceleration is orders of magnitude higher than ...
We present an outline of experiments being conducted at Oxford University on multiple-pulse, resonan...
This thesis presents results towards the realisation of high-repetition rate laser wakefield acceler...
Laser-driven plasma accelerators can generate accelerating gradients three orders of magnitude large...
In multi-pulse laser wakefield acceleration (MP-LWFA) a plasma wave is driven by a train of low-ener...
A method for generating large‐amplitude nonlinear plasma waves, which utilizes an optimized train of...
AbstractIn multi-pulse laser wakefield acceleration (MP-LWFA) a plasma wave is driven by a train of ...
A method for generating large‐amplitude nonlinear plasma waves, which utilizes an optimized train of...
he wakefield generated in a plasma by incoherently combining a large number of low energy laser puls...
A method for generating large-amplitude nonlinear plasma waves, which uti-lizes an optimized train o...
Plasma wakefield acceleration (PWFA) is a novel acceleration technique with promising prospects for ...
A novel laser-plasma-based source of relativistic electrons is described. It involves a combination ...