High-intensity laser-driven secondary radiation sources using the ZEUS 45 TW laser system at the Institute of Plasma Physics and Lasers of the Hellenic Mediterranean University Research Centre

Author:

Clark E. L.,Grigoriadis A.,Petrakis S.,Tazes I.,Andrianaki G.,Skoulakis A.,Orphanos Y.,Kaselouris E.,Fitilis I.ORCID,Chatzakis J.ORCID,Bakarezos E.,Dimitriou V.,Benis E. P.,Papadogiannis N. A.,Tatarakis M.ORCID

Abstract

Abstract The rapid development of high-intensity laser-generated particle and photon secondary sources has attracted widespread interest during the last 20 years not only due to fundamental science research but also because of the important applications of this developing technology. For instance, the generation of relativistic particle beams, betatron-type coherent X-ray radiation and high harmonic generation have attracted interest from various fields of science and technology owing to their diverse applications in biomedical, material science, energy, space, and security applications. In the field of biomedical applications in particular, laser-driven particle beams as well as laser-driven X-ray sources are a promising field of study. This article looks at the research being performed at the Institute of Plasma Physics and Lasers (IPPL) of the Hellenic Mediterranean University Research Centre. The recent installation of the ZEUS 45 TW laser system developed at IPPL offers unique opportunities for research in laser-driven particle and X-ray sources. This article provides information about the facility and describes initial experiments performed for establishing the baseline platforms for secondary plasma sources.

Publisher

Cambridge University Press (CUP)

Subject

Nuclear Energy and Engineering,Nuclear and High Energy Physics,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

Reference104 articles.

1. Measurements of Energetic Proton Transport through Magnetized Plasma from Intense Laser Interactions with Solids

2. Controlled Betatron X-Ray Radiation from Tunable Optically Injected Electrons

3. Bright spatially coherent synchrotron X-rays from a table-top source

4. 28. Hanton, F. , Doria, D. , Kakolee, K. F. , Kar, S. , Litt, S. K. , Fiorini, F. , Ahmed, H. , Green, S. , Jeynes, J. C. G. , Kavanagh, J. , Kirby, D. , Kirkby, K. J. , Lewis, C. L. , Merchant, M. J. , Nersisyan, G. , Prasad, R. , Prise, K. , Schettino, G. , Zpef, M. , and Borghesi, M. , Proc. SPIE 8779, 87791E (2013).

5. Generalized phase-matching conditions for high harmonics: The role of field-gradient forces

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