Back to Search Start Over

Different Versions of Cryogenic Current Comparators with Magnetic Core for Beam Current Measurements

Authors :
Golm, Jessica
De Gersem, Herbert
Fernandes, Miguel
Haider, David
Kurian, Febin
Marsic, Nicolas
Müller, Wolfgang
Neubert, Ralf
Schmelz, Matthias
Schmidl, Frank
Schwickert, Marcus
Seidel, Paul
Sieber, Thomas
Stöhlker, Thomas
Stolz, Ronny
Tan, Jocelyn
Tympel, Volker
Welsch, Carsten
Zakosarenko, Vyacheslav
Boland, Mark (Ed.)
Tanaka, Hitoshi (Ed.)
Button, David (Ed.)
Dowd, Rohan (Ed.)
Schaa, Volker RW (Ed.)
Tan, Eugene (Ed.)
Publication Year :
2019

Abstract

For more than 20 years Cryogenic Current Comparators (CCC) are used to measure the current of charged particle beams with low intensity (nA-range). The device was first established at GSI in Darmstadt and was improved over the past two decades by the cooperation of institutes in Jena, GSI and CERN. The improved versions differ in material parameters and electronics to increase the resolution and in dimensions in order to meet the requirements of the respective application. The device allows non-destructive measurements of the charged particle beam current. The azimuthal magnetic field which is generated by the beam current is detected by low temperature Superconducting Quantum Interference Device (SQUID) current sensors. A complex shaped superconductor cooled down to 4.2 K is used as magnetic shielding and a high permeability core serves as flux concentrator. Three versions of the CCC shall be presented in this work: (1) GSI-Pb-CCC which was running at GSI Darmstadt in a transfer line, (2) CERN-Nb-CCC currently installed in the Antiproton Decelerator at CERN and (3) GSI-Nb-CCC-XD which will be operating in the CRYRING at GSI 2019. Noise, signal and drift measurements were performed in the Cryo-Detector Lab at the University of Jena.<br />Proceedings of the 10th Int. Particle Accelerator Conf., IPAC2019, Melbourne, Australia

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....9eccef5d9918bda59acc466f62972780
Full Text :
https://doi.org/10.18429/jacow-ipac2019-thyypls2