The dynamics of energetic particles in strong electromagnetic fields can be heavily influenced by the energy loss arising from the emission of radiation during acceleration, known as radiation reaction. When interacting with a high-energy electron beam, today's lasers are sufficiently intense to explore the transition between the classical and quantum radiation reaction regimes. We present evidence of radiation reaction in the collision of an ultrarelativistic electron beam generated by laser-wakefield acceleration (μ 500 MeV) with an intense laser pulse (a0>10). We measure an energy loss in the postcollision electron spectrum that is correlated with the detected signal of hard photons (γ rays), consistent with a quantum description of radi...
Two signatures of quantum effects on radiation reaction in the collision of a GeV electron beam with...
The driving theme of this thesis is the experimental production and characterisation of high-energy ...
WOS:000344051400003 (Nº de Acesso Web of Science)Using full-scale 3D particle-in-cell simulations we...
The dynamics of energetic particles in strong electromagnetic fields can be heavily influenced by th...
The dynamics of energetic particles in strong electromagnetic fields can be heavily influenced by th...
The dynamics of energetic particles in strong electromagnetic fields can be heavily influenced by th...
The dynamics of energetic particles in strong electromagnetic fields can be heavily influenced by th...
The dynamics of energetic particles in strong electromagnetic fields can be heavily influenced by th...
The dynamics of energetic particles in strong electromagnetic fields can be heavily influenced by th...
The description of the dynamics of an electron in an external electromagnetic field of arbitrary int...
The motion of an electron in an external field of arbitrary intensity is one of the most fundamental...
The motion of an electron in an external field of arbitrary intensity is one of the most fundamental...
The motion of an electron in an external field of arbitrary intensity is one of the most fundamental...
The motion of an electron in an external field of arbitrary intensity is one of the most fundamental...
The description of the dynamics of an electron in an external electromagnetic field of arbitrary int...
Two signatures of quantum effects on radiation reaction in the collision of a GeV electron beam with...
The driving theme of this thesis is the experimental production and characterisation of high-energy ...
WOS:000344051400003 (Nº de Acesso Web of Science)Using full-scale 3D particle-in-cell simulations we...
The dynamics of energetic particles in strong electromagnetic fields can be heavily influenced by th...
The dynamics of energetic particles in strong electromagnetic fields can be heavily influenced by th...
The dynamics of energetic particles in strong electromagnetic fields can be heavily influenced by th...
The dynamics of energetic particles in strong electromagnetic fields can be heavily influenced by th...
The dynamics of energetic particles in strong electromagnetic fields can be heavily influenced by th...
The dynamics of energetic particles in strong electromagnetic fields can be heavily influenced by th...
The description of the dynamics of an electron in an external electromagnetic field of arbitrary int...
The motion of an electron in an external field of arbitrary intensity is one of the most fundamental...
The motion of an electron in an external field of arbitrary intensity is one of the most fundamental...
The motion of an electron in an external field of arbitrary intensity is one of the most fundamental...
The motion of an electron in an external field of arbitrary intensity is one of the most fundamental...
The description of the dynamics of an electron in an external electromagnetic field of arbitrary int...
Two signatures of quantum effects on radiation reaction in the collision of a GeV electron beam with...
The driving theme of this thesis is the experimental production and characterisation of high-energy ...
WOS:000344051400003 (Nº de Acesso Web of Science)Using full-scale 3D particle-in-cell simulations we...