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1.
Phys Rev E ; 96(4-1): 043210, 2017 Oct.
Article in English | MEDLINE | ID: mdl-29347630

ABSTRACT

For ion energy loss measurements in plasmas with near solid densities, an indirect laser heating scheme for carbon foils has been developed at GSI Helmholtzzentrum für Schwerionenforschung GmbH (Darmstadt, Germany). To achieve an electron density of 10^{22}cm^{3} and an electron temperature of 10-30eV, two carbon foils with an areal density of 100µg/cm^{2} heated in a double-hohlraum configuration have been chosen. In this paper we present the results of temperature measurements of both primary and secondary hohlraums for two different hohlraum designs. They were heated by the PHELIX laser with a wavelength of 527nm and an energy of 150J in 1.5ns. For this purpose the temperature has been investigated by an x-ray streak camera with a transmission grating as the dispersive element.

2.
Phys Rev Lett ; 110(11): 115001, 2013 Mar 15.
Article in English | MEDLINE | ID: mdl-25166546

ABSTRACT

This Letter reports on the measurement of the energy loss and the projectile charge states of argon ions at an energy of 4 MeV/u penetrating a fully ionized carbon plasma. The plasma of n(e)≈10(20) cm(-3) and T(e)≈180 eV is created by two laser beams at λ(Las)=532 nm incident from opposite sides on a thin carbon foil. The resulting plasma is spatially homogenous and allows us to record precise experimental data. The data show an increase of a factor of 2 in the stopping power which is in very good agreement with a specifically developed Monte Carlo code, that allows the calculation of the heavy ion beam's charge state distribution and its energy loss in the plasma.

3.
Rev Sci Instrum ; 83(4): 043501, 2012 Apr.
Article in English | MEDLINE | ID: mdl-22559530

ABSTRACT

This article reports on the development and set-up of a Nomarski-type multi-frame interferometer as a time and space resolving diagnostics of the free electron density in laser-generated plasma. The interferometer allows the recording of a series of 4 images within 6 ns of a single laser-plasma interaction. For the setup presented here, the minimal accessible free electron density is 5 × 10(18) cm(-3), the maximal one is 2 × 10(20) cm(-3). Furthermore, it provides a resolution of the electron density in space of 50 µm and in time of 0.5 ns for one image with a customizable magnification in space for each of the 4 images. The electron density was evaluated from the interferograms using an Abel inversion algorithm. The functionality of the system was proven during first experiments and the experimental results are presented and discussed. A ray tracing procedure was realized to verify the interferometry pictures taken. In particular, the experimental results are compared to simulations and show excellent agreement, providing a conclusive picture of the evolution of the electron density distribution.

4.
Phys Rev E Stat Nonlin Soft Matter Phys ; 84(1 Pt 2): 016412, 2011 Jul.
Article in English | MEDLINE | ID: mdl-21867327

ABSTRACT

At the GSI Helmholtz center for heavy-ion research combined experiments with heavy ions and laser-produced plasmas are investigated. As a preparation to utilize indirectly heated targets, where a converter hohlraum provides thermal radiation to create a more homogeneous plasma, this converter target has to be characterized. In this paper the latest results of these measurements are presented. Small spherical cavities with diameters between 600 and 750 µm were heated with laser energies up to 30 J at 532-nm wavelength. Radiation temperatures could be determined by time-resolved as well as time-integrated diagnostics, and maximum values of up to 35 eV were achieved.

5.
Phys Rev E Stat Nonlin Soft Matter Phys ; 81(2 Pt 2): 026401, 2010 Feb.
Article in English | MEDLINE | ID: mdl-20365659

ABSTRACT

The experimental data presented in this paper address the energy loss determination for argon at 4 MeV/u projectile energy in laser-generated carbon plasma covering a huge parameter range in density and temperature. Furthermore, a consistent theoretical description of the projectile charge state evolution via a Monte Carlo code is combined with an improved version of the CasP code that allows us to calculate the contributions to the stopping power of bound and free electrons for each projectile charge state. This approach gets rid of any effective charge description of the stopping power. Comparison of experimental data and theoretical results allows us to judge the influence of different plasma parameters.

6.
Dtsch Tierarztl Wochenschr ; 106(4): 155-7, 1999 Apr.
Article in German | MEDLINE | ID: mdl-10354645

ABSTRACT

A report on practical experiences with the education of aggressive dogs is given. Attention is payed to the instruction of the owners who ought to understand the nature and the behavioural needs of the animals. Positive results of the use of the electrical education aid Teletakt are reported.


Subject(s)
Aggression , Dogs/psychology , Teaching/methods , Animals , Conditioning, Psychological , Electroshock
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