Detector development for high energy physics applications

Nyomtatóbarát változatNyomtatóbarát változat
PhD típus: 
Fizikai Tudományok Doktori Iskola
Év: 
2019/2020
Témavezető: 
Név: 
Varga Dezső
Email cím: 
varga.dezso@wigner.mta.hu
Kutatóintézet/Tanszék: 
MTA Wigner FK
Beosztás: 
tud. fmts.
Tudományos fokozat: 
PhD
Konzulens: 
Név: 
dr. Légrády Dávid
Email cím: 
legrady@reak.bme.hu
Intézet: 
Nukleáris Technikai Intézet
Beosztás: 
egyetemi docens
Tudományos fokozat: 
PhD
Leírás: 

Since the 70-ies, the gaseous particle detectors are mandatory elements of the large high energy physics detector systems. With the advent of the microstructure detectors, the developments took a new pace in the last two decades, allowing higher rate capability and radiation tolerance. The key is the micrometer-scale components, such as tiny holes in a Gaseous Electron Multiplier (GEM), which optimize the electron transport. The purpose of the research within the scope of the present PhD project is generic development, diagnostic methodology and understanding the fundamental gaseous processes in these systems. Modern technologies, such as high density circuit production and 3D printing, can improve both the new and the classical structures. A relevant application of tracking detectors is cosmic particle imaging.

Elvárások: 

Extensive knowledge of the field of experimental particle physics (interaction of radiation and matter, detector operation), informatics basic knowledge, measurement technologies, English proficiency for ability of presentations and discussions. 

Munkahely neve: 
MTA Wigner FK
Munkahely címe: 
1121 Budapest, Konkoly Thege M. u. 29-33.