Plasma potential probes for hot plasmas A review and some news

Plasma probes are well established diagnostic tools. They are not complicated, relatively easy to construct and to handle. The easiest and fastest accessible parameter is their floating potential. However, the floating potential of a cold probe is not very significant. Much more important and releva...

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Published in:The European physical journal. D, Atomic, molecular, and optical physics Vol. 73; no. 4
Main Authors: Ionita, Codrina, Schneider, Bernd Sebastian, Costea, Stefan, Vasilovici, Ovidiu, Kovačič, Jernej, Gyergyek, Tomaz, Naulin, Volker, Rasmussen, Jens Juul, Vianello, Nicola, Spolaore, Monica, Stärz, Ronald, Schrittwieser, Roman
Format: Journal Article
Language:English
Published: Berlin/Heidelberg Springer Berlin Heidelberg 01-04-2019
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Abstract Plasma probes are well established diagnostic tools. They are not complicated, relatively easy to construct and to handle. The easiest and fastest accessible parameter is their floating potential. However, the floating potential of a cold probe is not very significant. Much more important and relevant is the plasma potential. But in most types of plasmas, consisting mainly of electrons and only positive ions, the floating potential is more negative than the plasma potential by a factor proportional to the electron temperature. Obviously this is due to the much higher mobility of the electrons. We present a review on probes whose floating potential is close to or ideally equal to the plasma potential. Such probes we name Plasma Potential Probes (PPP) and they can either be Electron Emissive Probes (EEP) or so-called Electron Screening Probes (EPS). These probes make it possible to measure the plasma potential directly and thus with high temporal resolution. An EEP compensates the plasma electron current by an electron emission current from the probe into the plasma, thereby rendering the current-voltage characteristic symmetric with respect to the plasma potential and shifting the floating potential towards the plasma potential. Only the simplest case of an EEP floating exactly on the plasma potential is discussed here in which case no sheath is present around the probe. An ESP, principally operable only in strong magnetic fields, screens off most of the plasma electron current from the probe collector, taking advantage of the fact that the gyro radius of electrons is usually much smaller than that of the ions. Also in this case we obtain a symmetric current-voltage characteristic and a shift of the probe’s floating potential towards the plasma potential. We have developed strong and robust EEPs and two types of ESPs, called BUnker Probes (BUP), for the use in the Scrape-Off Layer (SOL) of Medium-Size Tokamaks (MST), and other types of strongly magnetized hot plasmas. These probes are presented in detail. Graphical abstract
AbstractList Plasma probes are well established diagnostic tools. They are not complicated, relatively easy to construct and to handle. The easiest and fastest accessible parameter is their floating potential. However, the floating potential of a cold probe is not very significant. Much more important and relevant is the plasma potential. But in most types of plasmas, consisting mainly of electrons and only positive ions, the floating potential is more negative than the plasma potential by a factor proportional to the electron temperature. Obviously this is due to the much higher mobility of the electrons. We present a review on probes whose floating potential is close to or ideally equal to the plasma potential. Such probes we name Plasma Potential Probes (PPP) and they can either be Electron Emissive Probes (EEP) or so-called Electron Screening Probes (EPS). These probes make it possible to measure the plasma potential directly and thus with high temporal resolution. An EEP compensates the plasma electron current by an electron emission current from the probe into the plasma, thereby rendering the current-voltage characteristic symmetric with respect to the plasma potential and shifting the floating potential towards the plasma potential. Only the simplest case of an EEP floating exactly on the plasma potential is discussed here in which case no sheath is present around the probe. An ESP, principally operable only in strong magnetic fields, screens off most of the plasma electron current from the probe collector, taking advantage of the fact that the gyro radius of electrons is usually much smaller than that of the ions. Also in this case we obtain a symmetric current-voltage characteristic and a shift of the probe’s floating potential towards the plasma potential. We have developed strong and robust EEPs and two types of ESPs, called BUnker Probes (BUP), for the use in the Scrape-Off Layer (SOL) of Medium-Size Tokamaks (MST), and other types of strongly magnetized hot plasmas. These probes are presented in detail. Graphical abstract
ArticleNumber 73
Author Vianello, Nicola
Schrittwieser, Roman
Ionita, Codrina
Gyergyek, Tomaz
Stärz, Ronald
Schneider, Bernd Sebastian
Kovačič, Jernej
Vasilovici, Ovidiu
Rasmussen, Jens Juul
Costea, Stefan
Spolaore, Monica
Naulin, Volker
Author_xml – sequence: 1
  givenname: Codrina
  surname: Ionita
  fullname: Ionita, Codrina
  organization: Institute for Ion Physics and Applied Physics, University of Innsbruck
– sequence: 2
  givenname: Bernd Sebastian
  surname: Schneider
  fullname: Schneider, Bernd Sebastian
  organization: Institute for Ion Physics and Applied Physics, University of Innsbruck
– sequence: 3
  givenname: Stefan
  surname: Costea
  fullname: Costea, Stefan
  organization: Institute for Ion Physics and Applied Physics, University of Innsbruck
– sequence: 4
  givenname: Ovidiu
  surname: Vasilovici
  fullname: Vasilovici, Ovidiu
  organization: Institute for Ion Physics and Applied Physics, University of Innsbruck
– sequence: 5
  givenname: Jernej
  surname: Kovačič
  fullname: Kovačič, Jernej
  organization: Reactor Physics Department, Jožef Stefan Institute
– sequence: 6
  givenname: Tomaz
  surname: Gyergyek
  fullname: Gyergyek, Tomaz
  organization: Reactor Physics Department, Jožef Stefan Institute, Faculty of Electrical Engineering, University of Ljubljana
– sequence: 7
  givenname: Volker
  surname: Naulin
  fullname: Naulin, Volker
  organization: Department of Physics, Technical University of Denmark
– sequence: 8
  givenname: Jens Juul
  surname: Rasmussen
  fullname: Rasmussen, Jens Juul
  organization: Department of Physics, Technical University of Denmark
– sequence: 9
  givenname: Nicola
  surname: Vianello
  fullname: Vianello, Nicola
  organization: Consorzio RFX
– sequence: 10
  givenname: Monica
  surname: Spolaore
  fullname: Spolaore, Monica
  organization: Consorzio RFX
– sequence: 11
  givenname: Ronald
  surname: Stärz
  fullname: Stärz, Ronald
  organization: Institute for Ion Physics and Applied Physics, University of Innsbruck, Mechatronic Department, Management Center Innsbruck
– sequence: 12
  givenname: Roman
  surname: Schrittwieser
  fullname: Schrittwieser, Roman
  email: Roman.Schrittwieser@uibk.ac.at
  organization: Institute for Ion Physics and Applied Physics, University of Innsbruck
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Snippet Plasma probes are well established diagnostic tools. They are not complicated, relatively easy to construct and to handle. The easiest and fastest accessible...
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SubjectTerms Applications of Nonlinear Dynamics and Chaos Theory
Atomic
Molecular
Optical and Plasma Physics
Physical Chemistry
Physics
Physics and Astronomy
Quantum Information Technology
Quantum Physics
Spectroscopy/Spectrometry
Spintronics
Topical Review
Subtitle A review and some news
Title Plasma potential probes for hot plasmas
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