In the past few years we have established that Laser Ablation Surface Engineering (LASE) is a very effective way of producing surfaces which have Secondary Electron yields (SEY) < 1. These can be achieved with a variety of laser pulse durations from nano- to pico seconds. Unfortunately the features (i.e. moderately deep grooves and nano-particulates) that help to reduce the SEY also produce undesirable effects such as an increase in surface impedance and loose particulates. In this paper we have examined several techniques to minimise these unwanted effects. For reducing the depth of the surface altered layer femtosecond laser pulses are used which generate wave- length-scale surface structures with directionality and periodicity, known as ...
Secondary Electron Yield (SEY) [3, 5] occurs in a system when a primary electron impinges a material...
The electron-cloud phenomenon is one cause of beam instabilities in high intensity positive particle...
The electron-cloud phenomenon is one cause of beam instabilities in high intensity positive particle...
Developing a surface with low Secondary Electron Yield (SEY) is one of the main ways of mitigating e...
Developing a surface with low Secondary Electron Yield (SEY) is one of the main ways of mitigating e...
Pulsed laser processing of vacuum component surfaces is a promising method for electron cloud mitiga...
In the past few years, it has been established that Laser Ablation Surface Engineering (LASE) is a v...
Secondary Electron Yield (SEY) [3, 5] occurs in a system when a primary electron impinges a material...
In the past few years, it has been established that Laser Ablation Surface Engineering (LASE) is a v...
Secondary Electron Yield (SEY) [3, 5] occurs in a system when a primary electron impinges a material...
Secondary Electron Yield (SEY) [3, 5] occurs in a system when a primary electron impinges a material...
Secondary Electron Yield (SEY) [3, 5] occurs in a system when a primary electron impinges a material...
Secondary Electron Yield (SEY) [3, 5] occurs in a system when a primary electron impinges a material...
Secondary Electron Yield (SEY) [3, 5] occurs in a system when a primary electron impinges a material...
Secondary Electron Yield (SEY) [3, 5] occurs in a system when a primary electron impinges a material...
Secondary Electron Yield (SEY) [3, 5] occurs in a system when a primary electron impinges a material...
The electron-cloud phenomenon is one cause of beam instabilities in high intensity positive particle...
The electron-cloud phenomenon is one cause of beam instabilities in high intensity positive particle...
Developing a surface with low Secondary Electron Yield (SEY) is one of the main ways of mitigating e...
Developing a surface with low Secondary Electron Yield (SEY) is one of the main ways of mitigating e...
Pulsed laser processing of vacuum component surfaces is a promising method for electron cloud mitiga...
In the past few years, it has been established that Laser Ablation Surface Engineering (LASE) is a v...
Secondary Electron Yield (SEY) [3, 5] occurs in a system when a primary electron impinges a material...
In the past few years, it has been established that Laser Ablation Surface Engineering (LASE) is a v...
Secondary Electron Yield (SEY) [3, 5] occurs in a system when a primary electron impinges a material...
Secondary Electron Yield (SEY) [3, 5] occurs in a system when a primary electron impinges a material...
Secondary Electron Yield (SEY) [3, 5] occurs in a system when a primary electron impinges a material...
Secondary Electron Yield (SEY) [3, 5] occurs in a system when a primary electron impinges a material...
Secondary Electron Yield (SEY) [3, 5] occurs in a system when a primary electron impinges a material...
Secondary Electron Yield (SEY) [3, 5] occurs in a system when a primary electron impinges a material...
Secondary Electron Yield (SEY) [3, 5] occurs in a system when a primary electron impinges a material...
The electron-cloud phenomenon is one cause of beam instabilities in high intensity positive particle...
The electron-cloud phenomenon is one cause of beam instabilities in high intensity positive particle...