
Studies with a Liquid Argon Time Projection Chamber
Kurzinformation



inkl. MwSt. Versandinformationen
Artikel zZt. nicht lieferbar
Artikel zZt. nicht lieferbar

Beschreibung
Michael Schenk evaluates new technologies and methods, such as cryogenic read-out electronics and a UV laser system, developed to optimise the performance of large liquid argon time projection chambers (LArTPC). Amongst others, the author studies the uniformity of the electric field produced by a Greinacher high-voltage generator operating at cryogenic temperatures, measures the linear energy transfer (LET) of muons and the longitudinal diffusion coefficient of electrons in liquid argon. The results are obtained by analysing events induced by cosmic-ray muons and UV laser beams. The studies are carried out with ARGONTUBE, a prototype LArTPC in operation at the University of Bern, Switzerland, designed to investigate the feasibility of drift distances of up to five metres for electrons in liquid argon. von Schenk, Michael
Produktdetails

So garantieren wir Dir zu jeder Zeit Premiumqualität.
Über den Autor
Michael Schenk obtained his master's degree in Applied / Experimental Physics from the University of Bern, Switzerland, and is currently doing an internship at CERN, Geneva, Switzerland in the fields of collective effects and beam instabilities in particle accelerators.
- Gebunden
- 416 Seiten
- Erschienen 1991
- Springer
- Hardcover
- 552 Seiten
- Erschienen 1996
- WORLD SCIENTIFIC PUB CO INC
- Hardcover
- 380 Seiten
- Erschienen 2000
- World Scientific Publishing...
- Hardcover
- 632 Seiten
- Erschienen 1987
- North Holland
- Gebunden
- 284 Seiten
- Erschienen 2005
- Wiley-VCH
- Hardcover
- 912 Seiten
- Erschienen 1990
- North Holland
- Hardcover
- 576 Seiten
- Erschienen 1986
- Wiley-Interscience
- hardcover
- 198 Seiten
- Erschienen 2006
- Wiley-VCH
- Hardcover
- 133 Seiten
- Erschienen 2014
- IOP PUBL LTD
- Hardcover
- 232 Seiten
- Erschienen 2021
- Springer
- hardcover
- 516 Seiten
- Erschienen 1982
- Springer
- Gebunden
- 340 Seiten
- Erschienen 2010
- Wiley-VCH
- Hardcover
- 392 Seiten
- Erschienen 2008
- World Scientific Publishing...
- Hardcover
- 392 Seiten
- Erschienen 2015
- Wiley-Blackwell