The Extreme Light Infrastructure - Nuclear Physics facility is dedicated to nuclear physics studies with the use of extreme electromagnetic radiation. One of the main research system to be installed and operated in the facility is an outstanding high brilliance gamma beam system. The Gamma Beam System of ELI–NP will produce intense, quasi–monochromatic gamma beams via inverse Compton scattering of short laser pulses on relativistic electron beam pulses. The gamma beams available at ELI–NP will allow for the performance of photo-nuclear reactions aiming to reveal the intimate structure of the atomic nucleus. Nuclear Resonance Fluorescence, photo-fission, photo-disintegration reactions above the particle threshold will be used to study the di...
Summarization: High power lasers have proven being capable to produce high energy γ-rays, charged pa...
Extreme Light Infrastructure (ELI) is a pan European research initiative selected on the European St...
High power lasers have proven being capable to produce high energy Ȗ-rays, charged particles and neu...
The Extreme Light Infrastructure - Nuclear Physics facility is dedicated to nuclear physics studies ...
The Extreme Light Infrastructure - Nuclear Physics, one of the three pillars of the Extreme Light In...
The spectacular progress of electron and heavy-ions acceleration driven by ultra-short high-power la...
The future prospects of photonuclear reactions studies at the new Extreme Light Infrastructure\u2014...
Extreme Light Infrastructure–Nuclear Physics (ELI–NP) is one of the three pillars of the pan-Europea...
The new research facility Extreme Light Infrastructure – Nuclear Physics (ELI-NP) is under construct...
cility ELI, will feature an ultra-intense gamma-ray beam, with unique characteristics that will allo...
The perspectives for photonuclear experiments at the new Extreme Light Infrastructure - Nuclear Phys...
The Extreme Light Infrastructure-Nuclear Physics (ELI-NP) facility is currently under construction ...
A renaissance in nuclear physics is occurring around the world because of a new kind of incredibly b...
At the Extreme Light Infrastructure - Nuclear Physics facility (ELI-NP), high-power laser systems to...
Summarization: High power lasers have proven being capable to produce high energy γ-rays, charged pa...
Extreme Light Infrastructure (ELI) is a pan European research initiative selected on the European St...
High power lasers have proven being capable to produce high energy Ȗ-rays, charged particles and neu...
The Extreme Light Infrastructure - Nuclear Physics facility is dedicated to nuclear physics studies ...
The Extreme Light Infrastructure - Nuclear Physics, one of the three pillars of the Extreme Light In...
The spectacular progress of electron and heavy-ions acceleration driven by ultra-short high-power la...
The future prospects of photonuclear reactions studies at the new Extreme Light Infrastructure\u2014...
Extreme Light Infrastructure–Nuclear Physics (ELI–NP) is one of the three pillars of the pan-Europea...
The new research facility Extreme Light Infrastructure – Nuclear Physics (ELI-NP) is under construct...
cility ELI, will feature an ultra-intense gamma-ray beam, with unique characteristics that will allo...
The perspectives for photonuclear experiments at the new Extreme Light Infrastructure - Nuclear Phys...
The Extreme Light Infrastructure-Nuclear Physics (ELI-NP) facility is currently under construction ...
A renaissance in nuclear physics is occurring around the world because of a new kind of incredibly b...
At the Extreme Light Infrastructure - Nuclear Physics facility (ELI-NP), high-power laser systems to...
Summarization: High power lasers have proven being capable to produce high energy γ-rays, charged pa...
Extreme Light Infrastructure (ELI) is a pan European research initiative selected on the European St...
High power lasers have proven being capable to produce high energy Ȗ-rays, charged particles and neu...