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RIS citation export for WEPWA012: Design of a Microwave Frequency Sweep Interferometer for Plasma Density Measurements in ECR Ion Sources

TY - CONF
AU - Torrisi, G.
AU - Agnello, R.
AU - Castro, G.
AU - Celona, L.
AU - Finocchiaro, V.
AU - Gammino, S.
AU - Isernia, T.
AU - Mascali, D.
AU - Neri, L.
AU - Passarello, S.
AU - Sorbello, G.
ED - Henderson, Stuart
ED - Akers, Evelyn
ED - Satogata, Todd
ED - Schaa, Volker R.W.
TI - Design of a Microwave Frequency Sweep Interferometer for Plasma Density Measurements in ECR Ion Sources
J2 - Proc. of IPAC2015, Richmond, VA, USA, May 3-8, 2015
C1 - Richmond, VA, USA
T2 - International Particle Accelerator Conference
T3 - 6
LA - english
AB - Electron Cyclotron Resonance Ion Sources (ECRIS) are among the candidates to support the growing request of intense beams of multicharged ions. Their further development is related to the availability of new diagnostic tools, nowadays consisting of few types only of devices designed on purpose for such compact machines. Microwave Interferometry is a non-invasive method for plasma diagnostics and represents the best candidate for the whole plasma density measurements. Interferometry in ECR Ion Sources is a challenging task due to their compact size. The typical density range of ECR plasmas (10¹¹-10¹² cm⁻³) causes the probing beam wavelength to be in the order of few centimetres, which is comparable to the chamber radius. The paper describes the design of a new microwave interferometer based on the so-called "frequency sweep" method: the density is here derived by the frequency shift of a beating signal obtained during the fast sweep of both probing and reference microwave signals; inner cavity multipaths contributions can thereby be suppressed by cleaning the spurious frequencies from the beating signal spectrum.
PB - JACoW
CP - Geneva, Switzerland
SP - 2512
EP - 2514
KW - plasma
KW - ion
KW - simulation
KW - diagnostics
KW - ion-source
DA - 2015/06
PY - 2015
SN - 978-3-95450-168-7
DO - 10.18429/JACoW-IPAC2015-WEPWA012
UR - http://jacow.org/ipac2015/papers/wepwa012.pdf
ER -