This book discusses a novel and high-rate-capable micro pattern gaseous detector of the Micromegas (MICRO-MEsh GAS detector) type. It provides a detailed characterization of the performance of Micromegas detectors on the basis of measurements and simulations, along with an in-depth examination of analysis and reconstruction methods. The accurate and efficient detection of minimum ionizing particles in high-rate background environments is demonstrated. The excellent performance determined here for these lightweight detectors will make possible the live medical imaging of a patient during ion-beam treatment.
This book discusses a novel and high-rate-capable micro pattern gaseous detector of the Micromegas (MICRO-MEsh GAS detector) type. It provides a detailed characterization of the performance of Micromegas detectors on the basis of measurements and simulations, along with an in-depth examination of analysis and reconstruction methods. The accurate and efficient detection of minimum ionizing particles in high-rate background environments is demonstrated. The excellent performance determined here for these lightweight detectors will make possible the live medical imaging of a patient during ion-beam treatment.
Nominated as an outstanding PhD thesis by the Ludwig-Maximilians-Universität München, Germany Offers a compendium on Micromegas detectors in general and floating strip Micromegas in particular Provides a detailed characterization of the performance of Micromegas detectors, based on measurements and simulations Includes an in-depth discussion of analysis and reconstruction methods Includes supplementary material: sn.pub/extras
Jonathan Bortfeldt
High-rate capable tracking detector Ion transmission radiography Low material budget detector Micro pattern gaseous detector Micromegas detector uTPC reconstruction