• Matter and Radiation at Extremes
  • Vol. 5, Issue 2, 24402 (2020)
K. A. Tanaka1、*, K. M. Spohr1, D. L. Balabanski1, S. Balascuta1, L. Capponi1, M. O. Cernaianu1, M. Cuciuc1, A. Cucoanes1, I. Dancus1, A. Dhal1, B. Diaconescu1, D. Doria1, P. Ghenuche1, D. G. Ghita1, S. Kisyov1, V. Nastasa1, J. F. Ong1, F. Rotaru1, D. Sangwan1, P.-A. S?derstr?m1, D. Stutman2, G. Suliman1, O. Tesileanu1, L. Tudor1, N. Tsoneva1, C. A. Ur1, D. Ursescu1, and N. V. Zamfir1
Author Affiliations
  • 1Extreme Light Infrastructure (ELI-NP) and Horia Hulubei National Institute for R & D in Physics and Nuclear Engineering (IFIN-HH), Str. Reactorului No. 30, 077125 Bucharest–M?gurele, Romania
  • 2Extreme Light Infrastructure (ELI-NP) and Horia Hulubei National Institute for R & D in Physics and Nuclear Engineering (IFIN-HH), Str. Reactorului No. 30, 077125 Bucharest–M?gurele, Romania
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    DOI: 10.1063/1.5093535 Cite this Article
    K. A. Tanaka, K. M. Spohr, D. L. Balabanski, S. Balascuta, L. Capponi, M. O. Cernaianu, M. Cuciuc, A. Cucoanes, I. Dancus, A. Dhal, B. Diaconescu, D. Doria, P. Ghenuche, D. G. Ghita, S. Kisyov, V. Nastasa, J. F. Ong, F. Rotaru, D. Sangwan, P.-A. S?derstr?m, D. Stutman, G. Suliman, O. Tesileanu, L. Tudor, N. Tsoneva, C. A. Ur, D. Ursescu, N. V. Zamfir. Current status and highlights of the ELI-NP research program[J]. Matter and Radiation at Extremes, 2020, 5(2): 24402 Copy Citation Text show less

    Abstract

    The emergence of a new era reaching beyond current state-of-the-art ultrashort and ultraintense laser technology has been enabled by the approval of around € 850 million worth of structural funds in 2011–2012 by the European Commission for the installation of Extreme Light Infrastructure (ELI). The ELI project consists of three pillars being built in the Czech Republic, Hungary, and Romania. This challenging proposal is based on recent technical progress allowing ultraintense laser fields in which intensities will soon be reaching as high as I0 ~ 1023 W cm?2. This tremendous technological advance has been brought about by the invention of chirped pulse amplification by Mourou and Strickland. Romania is hosting the ELI for Nuclear Physics (ELI-NP) pillar in M?gurele near Bucharest. The new facility, currently under construction, is intended to serve the broad national, European, and international scientific community. Its mission covers scientific research at the frontier of knowledge involving two domains. The first is laser-driven experiments related to NP, strong-field quantum electrodynamics, and associated vacuum effects. The second research domain is based on the establishment of a Compton-backscattering-based, high-brilliance, and intense γ beam with Eγ ? 19.5 MeV, which represents a merger between laser and accelerator technology. This system will allow the investigation of the nuclear structure of selected isotopes and nuclear reactions of relevance, for example, to astrophysics with hitherto unprecedented resolution and accuracy. In addition to fundamental themes, a large number of applications with significant societal impact will be developed. The implementation of the project started in January 2013 and is spearheaded by the ELI-NP/Horia Hulubei National Institute for Physics and Nuclear Engineering (IFIN-HH). Experiments will begin in early 2020.
    a0=eE0mecω=I0λ021.37×1018Wcm2(μm/λ)2,(1)

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    Em/n=mpc22F22c2Fσ+c4σ2,(2)

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    EionZion230 MeV PLP/PW,(3)

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    αD=c2π20σabs(E)E2dE,(5)

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    Ψν(JM)=iRi(Jν)QJMi++λ1i1λ2i2Pλ2i2λ1i1(Jν)[Qλ1μ1i1+Qλ2μ2i2+]JM+λ1i1λ2i2λ3i3ITλ3i3λ1i1λ2i2I(Jν)[[Qλ1μ1i1+Qλ2μ2i2+]IKQλ3μ3i3+]JMΨ0,(6)

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    dNe+edφ=N0(1+APcos2φ),(7)

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    K. A. Tanaka, K. M. Spohr, D. L. Balabanski, S. Balascuta, L. Capponi, M. O. Cernaianu, M. Cuciuc, A. Cucoanes, I. Dancus, A. Dhal, B. Diaconescu, D. Doria, P. Ghenuche, D. G. Ghita, S. Kisyov, V. Nastasa, J. F. Ong, F. Rotaru, D. Sangwan, P.-A. S?derstr?m, D. Stutman, G. Suliman, O. Tesileanu, L. Tudor, N. Tsoneva, C. A. Ur, D. Ursescu, N. V. Zamfir. Current status and highlights of the ELI-NP research program[J]. Matter and Radiation at Extremes, 2020, 5(2): 24402
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