DocumentCode :
3335361
Title :
Effect of sense wire resistance on readout noise of large liquid argon time projection chambers
Author :
Rescia, S. ; Radeka, V.
Author_Institution :
Brookhaven Nat. Lab., Upton, NY, USA
fYear :
2009
fDate :
Oct. 24 2009-Nov. 1 2009
Firstpage :
1932
Lastpage :
1935
Abstract :
Large Liquid Argon (LAr) Time Projection Chambers (TPCs) are becoming very attractive for long baseline neutrino and proton decay experiments because of their imaging capabilities and their excellent energy resolution. In the design of large LTPCs, with wire lengths of several meters (~5 m, and up to 10-20 m for proposed multi-kiloton detectors), the noise generated by the resistance of the wire needs to be taken into account. The wire cannot be modeled simply as a capacitance connected to the preamplifier: its resistance, coupled capacitively to adjacent wires constitutes a distributed RC diffusive line, which injects a noise current into the preamplifier. It will be shown that for most practical cases the noise source can be modeled as an equivalent noise generator corresponding to a resistance of Rwire/3, in series to an impedance equal to the wire capacitance. This simple models allows the use the familiar formulas for the noise analysis of capacitive sources. The wire resistance noise for a typical 5 m long, 150 ¿m stainless steel wire (3 mm wire spacing, and 3 mm wire planes separation) increases the total noise by about 20% at 1 ¿s shaping time, and becomes dominant for wire lengths >10 m. It can be reduced by plating the stainless steel wire with high electrical conductivity metals.
Keywords :
electric resistance; proton decay; readout electronics; stainless steel; time projection chambers; wires (electric); capacitive sources; distributed RC diffusive line; equivalent noise generator; large liquid argon time projection chambers; long baseline neutrino; noise analysis; preamplifier; proton decay experiments; readout noise; sense wire resistance; stainless steel wire; wire capacitance; wire resistance noise; Argon; Capacitance; Energy resolution; Neutrino sources; Noise generators; Noise shaping; Preamplifiers; Protons; Steel; Wire;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nuclear Science Symposium Conference Record (NSS/MIC), 2009 IEEE
Conference_Location :
Orlando, FL
ISSN :
1095-7863
Print_ISBN :
978-1-4244-3961-4
Electronic_ISBN :
1095-7863
Type :
conf
DOI :
10.1109/NSSMIC.2009.5402155
Filename :
5402155
Link To Document :
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