
Particle Detection with Drift Chambers
Springer (Publisher)
2nd Edition
Published on 22. October 2010
Book
Paperback/Softback
XV, 448 pages
978-3-642-09538-2 (ISBN)
Description
A drift chamber is an apparatus for measuring the space coordinates of the trajectory of a charged particle. This is achieved by detecting the ionization electrons produced by the charged particle in the gas of the chamber and by measuring their drift times and arrival positions on sensitive electrodes. When the multiwire proportional chamber, or 'Charpak chamber' as we used to call it, was introduced in 1968, its authors had already noted that the time of a signal could be useful for a coordinate determination, and rst studies with a drift ch- ber were made by Bressani, Charpak, Rahm and Zupanci c in 1969. When the rst operational drift-chamber system with electric circuitry and readout was built by Walenta, Heintze and Schurlein ¨ in 1971, a new instrument for particle experiments had appeared. A broad study of the behaviour of drifting electrons in gases began in laboratories where there was interest in the detection of particles.
More details
Series
Edition
Softcover reprint of hardcover 2nd ed. 2008
Language
English
Place of publication
Berlin
Germany
Publishing group
Springer Berlin
Target group
Professional and scholarly
Research
Edition type
Revised edition
Illustrations
XV, 448 p.
Dimensions
Height: 235 mm
Width: 155 mm
Thickness: 25 mm
Weight
698 gr
ISBN-13
978-3-642-09538-2 (9783642095382)
DOI
10.1007/978-3-540-76684-1
Schweitzer Classification
Other editions
Additional editions

Walter Blum | Werner Riegler | Luigi Rolandi
Particle Detection with Drift Chambers
Book
08/2008
2nd Edition
Springer
€171.19
Shipment within 7-9 days
Persons
Content
Gas Ionization by Charged Particles and by Laser Rays.- The Drift of Electrons and Ions in Gases.- Electrostatics of Tubes, Wire Grids and Field Cages.- Amplification of Ionization.- Creation of the Signal.- Electronics for Drift Chambers.- Coordinate Measurement and Fundamental Limits of Accuracy.- Geometrical Track Parameters and their Errors.- Ion Gates.- Particle Identification by Measurement of Ionization.- Existing Drift Chambers #x2013; An Overview.- Drift-Chamber Gases.