As part of the Extreme Light pan-European research infrastructure, Extreme Light Infrastructure − Nuclear Physics (ELI-NP) in Romania will focus on topics in Nuclear Physics, fundamental Physics and applications, based on very intense photon beams. Laser-based acceleration of electrons, protons and heavy ions is a prerequisite for a multitude of laser-driven nuclear physics experiments already proposed by the international research community. A total of six outputs of the dual-amplification chain laser system, two of 100TW, two of 1PW and two of 10PW will be employed in 5 experimental areas, with the possibility to use long and short focal lengths, gas and solid targets, reaching the whole range of laser acceleration processes. We describe ...
In this contribution we will present the future activities that our collaboration will carry out at ...
Summarization: High power lasers have proven being capable to produce high energy γ-rays, charged pa...
ELI - Extreme Light Infrastructure, a project to build an international research infrastructure “ded...
As part of the Extreme Light pan-European research infrastructure, Extreme Light Infrastructure − Nu...
Extreme Light Infrastructure (ELI) is a pan European research initiative selected on the European St...
Abstract. The field of the uncharted territory of high-intensity laser interaction with matter is co...
International audienceThe European Strategy Forum on Research Infrastructures (ESFRI) has selected i...
International audienceThe European Strategic Forum for Research Infrastructures (ESFRI) has selected...
The spectacular progress of electron and heavy-ions acceleration driven by ultra-short high-power la...
High power lasers have proven being capable to produce high energy Ȗ-rays, charged particles and neu...
The new research facility Extreme Light Infrastructure – Nuclear Physics (ELI-NP) is under construct...
High power short-pulse lasers presently reach peak powers of a few hundred Terawatts up to a Petawa...
Extreme Light Infrastructure–Nuclear Physics (ELI–NP) is one of the three pillars of the pan-Europea...
Abstract. The Extreme Light Infrastructure (ELI) Pan-European initiative represents a major step for...
In this contribution we will present the future activities that our collaboration will carry out at ...
Summarization: High power lasers have proven being capable to produce high energy γ-rays, charged pa...
ELI - Extreme Light Infrastructure, a project to build an international research infrastructure “ded...
As part of the Extreme Light pan-European research infrastructure, Extreme Light Infrastructure − Nu...
Extreme Light Infrastructure (ELI) is a pan European research initiative selected on the European St...
Abstract. The field of the uncharted territory of high-intensity laser interaction with matter is co...
International audienceThe European Strategy Forum on Research Infrastructures (ESFRI) has selected i...
International audienceThe European Strategic Forum for Research Infrastructures (ESFRI) has selected...
The spectacular progress of electron and heavy-ions acceleration driven by ultra-short high-power la...
High power lasers have proven being capable to produce high energy Ȗ-rays, charged particles and neu...
The new research facility Extreme Light Infrastructure – Nuclear Physics (ELI-NP) is under construct...
High power short-pulse lasers presently reach peak powers of a few hundred Terawatts up to a Petawa...
Extreme Light Infrastructure–Nuclear Physics (ELI–NP) is one of the three pillars of the pan-Europea...
Abstract. The Extreme Light Infrastructure (ELI) Pan-European initiative represents a major step for...
In this contribution we will present the future activities that our collaboration will carry out at ...
Summarization: High power lasers have proven being capable to produce high energy γ-rays, charged pa...
ELI - Extreme Light Infrastructure, a project to build an international research infrastructure “ded...