A recently suggested spectroscopic approach for magnetic-field determination in plasma is employed to measure magnetic fields in an expanding laser-produced plasma plume in an externally applied magnetic field. The approach enables the field determination in a diagnostically difficult regime for which the Zeeman-split patterns are not resolvable, as is often encountered under the conditions characteristic of high-energy-density plasmas. Here, such conditions occur in the high-density plasma near the laser target, due to the dominance of Stark broadening. A pulsed-power system is used to generate magnetic fields with a peak magnitude of 25 T at the inner-electrode surface in a coaxial configuration. An aluminum target attached to the inner electrode surface is then irradiated by a laser beam to produce the expanding plasma that interacts with the applied azimuthal magnetic field. A line-shape analysis of the Al III 4s–4p doublet (5696 and 5722 Å) enables the simultaneous determination of the magnetic field and the electron density. The measured magnetic fields are generally found to agree with those expected in a vacuum based on the pulsed-power system current. Examples of other transitions that can be used to diagnose a wide range of plasma and magnetic field parameters are presented.
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September 2011
Research Article|
September 06 2011
Beyond Zeeman spectroscopy: Magnetic-field diagnostics with Stark-dominated line shapes Available to Purchase
S. Tessarin;
S. Tessarin
1Faculty of Physics,
Weizmann Institute of Science
, Rehovot 76100, Israel
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D. Mikitchuk;
D. Mikitchuk
1Faculty of Physics,
Weizmann Institute of Science
, Rehovot 76100, Israel
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R. Doron;
R. Doron
a)
1Faculty of Physics,
Weizmann Institute of Science
, Rehovot 76100, Israel
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E. Stambulchik;
E. Stambulchik
1Faculty of Physics,
Weizmann Institute of Science
, Rehovot 76100, Israel
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E. Kroupp;
E. Kroupp
1Faculty of Physics,
Weizmann Institute of Science
, Rehovot 76100, Israel
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Y. Maron;
Y. Maron
1Faculty of Physics,
Weizmann Institute of Science
, Rehovot 76100, Israel
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D. A. Hammer;
D. A. Hammer
2Laboratory of Plasma Studies,
Cornell University
, Ithaca, New York 14853, USA
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V. L. Jacobs;
V. L. Jacobs
3
Naval Research Laboratory
, Washington DC 20375, USA
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J. F. Seely;
J. F. Seely
3
Naval Research Laboratory
, Washington DC 20375, USA
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B. V. Oliver;
B. V. Oliver
4
Sandia National Laboratories
, Albuquerque, New Mexico 87185, USA
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A. Fisher
A. Fisher
5Faculty of Physics,
Technion-Israel Institute of Technology
, Haifa, Israel
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S. Tessarin
1
D. Mikitchuk
1
R. Doron
1,a)
E. Stambulchik
1
E. Kroupp
1
Y. Maron
1
D. A. Hammer
2
V. L. Jacobs
3
J. F. Seely
3
B. V. Oliver
4
A. Fisher
5
1Faculty of Physics,
Weizmann Institute of Science
, Rehovot 76100, Israel
2Laboratory of Plasma Studies,
Cornell University
, Ithaca, New York 14853, USA
3
Naval Research Laboratory
, Washington DC 20375, USA
4
Sandia National Laboratories
, Albuquerque, New Mexico 87185, USA
5Faculty of Physics,
Technion-Israel Institute of Technology
, Haifa, Israel
a)
Author to whom correspondence should be addressed. Electronic mail: [email protected].
Phys. Plasmas 18, 093301 (2011)
Article history
Received:
May 15 2011
Accepted:
July 27 2011
Citation
S. Tessarin, D. Mikitchuk, R. Doron, E. Stambulchik, E. Kroupp, Y. Maron, D. A. Hammer, V. L. Jacobs, J. F. Seely, B. V. Oliver, A. Fisher; Beyond Zeeman spectroscopy: Magnetic-field diagnostics with Stark-dominated line shapes. Phys. Plasmas 1 September 2011; 18 (9): 093301. https://doi.org/10.1063/1.3625555
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