Thermal and log-normal distributions of plasma in laser driven Coulomb explosions of deuterium clusters

Author:

Barbarino M.1,Warrens M.12,Bonasera A.13,Lattuada D.134,Bang W.56,Quevedo H. J.7,Consoli F.8,De Angelis R.8,Andreoli P.8,Kimura S.9,Dyer G.7,Bernstein A. C.7,Hagel K.1,Barbui M.1,Schmidt K.10,Gaul E.7,Donovan M. E.7,Natowitz J. B.1,Ditmire T.7

Affiliation:

1. Cyclotron Institute, Texas A&M University, College Station, Texas 77843, USA

2. University of Dallas, Irving, TX 75062, USA

3. LNS-INFN, via S. Sofia, 62, 95123 Catania, Italy

4. Universitá Degli Studi di Enna “Kore”, 94100 Enna, Italy

5. Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA

6. Department of Physics and Photon Science, Gwangju Institute of Science and Technology (GIST), Gwangju 61005, South Korea

7. Center for High Energy Density Science, C1510, University of Texas at Austin, Austin, Texas 78712, USA

8. Associazione Euratom-ENEA Sulla Fusione, via Enrico Fermi 45, CP 65-00044 Frascati, Rome, Italy

9. Department of Physics, University of Milano, via Celoria 16, 20133 Milano, Italy

10. Institute of Physics, University of Silesia, Katowice, Poland

Abstract

In this work, we explore the possibility that the motion of the deuterium ions emitted from Coulomb cluster explosions is highly disordered enough to resemble thermalization. We analyze the process of nuclear fusion reactions driven by laser–cluster interactions in experiments conducted at the Texas Petawatt laser facility using a mixture of D2+3He and CD4+3He cluster targets. When clusters explode by Coulomb repulsion, the emission of the energetic ions is “nearly” isotropic. In the framework of cluster Coulomb explosions, we analyze the energy distributions of the ions using a Maxwell–Boltzmann (MB) distribution, a shifted MB distribution (sMB), and the energy distribution derived from a log-normal (LN) size distribution of clusters. We show that the first two distributions reproduce well the experimentally measured ion energy distributions and the number of fusions from d–d and d-3He reactions. The LN distribution is a good representation of the ion kinetic energy distribution well up to high momenta where the noise becomes dominant, but overestimates both the neutron and the proton yields. If the parameters of the LN distributions are chosen to reproduce the fusion yields correctly, the experimentally measured high energy ion spectrum is not well represented. We conclude that the ion kinetic energy distribution is highly disordered and practically not distinguishable from a thermalized one.

Publisher

World Scientific Pub Co Pte Lt

Subject

General Physics and Astronomy,Nuclear and High Energy Physics

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