Although several laser–plasma-based methods have been proposed for generating energetic electrons, positrons and γ-photons, manipulation of their microstructures is still challenging, and their angular momentum control has not yet been achieved. Here, we present and numerically demonstrate an all-optical scheme to generate bright GeV γ-photon and positron beams with controllable angular momentum by use of two counter-propagating circularly-polarized lasers in a near-critical-density plasma. The plasma acts as a 'switching medium', where the trapped electrons first obtain angular momentum from the drive laser pulse and then transfer it to the γ-photons via nonlinear Compton scattering. Further through the multiphoton Breit–Wheeler process, d...
Multi-petawatt (PW) lasers enable intensities exceeding 10^23 Wcm^-2, at which point quantum electro...
Electron-positron pairs are produced through the Breit-Wheeler process when energetic photons traver...
Multi-petawatt laser systems will open up a novel interaction regime mixing collective plasma and qu...
Although several laser–plasma-based methods have been proposed for generating energetic electrons, p...
Pair production can be triggered by high intensity lasers via the Breit-Wheeler process. However, th...
High-energy positrons and bright γ-ray sources are of great importance both in fundamental research ...
Relativistic spin-polarized positron beams are indispensable for future electron-positron colliders ...
Circularly polarized (CP) $\gamma$-ray sources are versatile for broad applications in nuclear physi...
X/ γ -ray have many potential applications in laboratory astrophysics and particle physics. Although...
Generation of circularly-polarized (CP) and linearly-polarized (LP) $\gamma$-rays via the single-sho...
Generation of ultrarelativistic polarized positrons during interaction of an ultrarelativistic elect...
Gamma-ray beams with large angular momentum are a very valuable tool to study astrophysical phenomen...
Showers of γ rays and positrons are produced when a high-energy electron beam collides with a superi...
Abstract: Generation of energetic electron-positron pairs using multi-petawatt (PW) lasers has recen...
Attosecond light sources have the potential to open up new avenues in ultrafast science. However, th...
Multi-petawatt (PW) lasers enable intensities exceeding 10^23 Wcm^-2, at which point quantum electro...
Electron-positron pairs are produced through the Breit-Wheeler process when energetic photons traver...
Multi-petawatt laser systems will open up a novel interaction regime mixing collective plasma and qu...
Although several laser–plasma-based methods have been proposed for generating energetic electrons, p...
Pair production can be triggered by high intensity lasers via the Breit-Wheeler process. However, th...
High-energy positrons and bright γ-ray sources are of great importance both in fundamental research ...
Relativistic spin-polarized positron beams are indispensable for future electron-positron colliders ...
Circularly polarized (CP) $\gamma$-ray sources are versatile for broad applications in nuclear physi...
X/ γ -ray have many potential applications in laboratory astrophysics and particle physics. Although...
Generation of circularly-polarized (CP) and linearly-polarized (LP) $\gamma$-rays via the single-sho...
Generation of ultrarelativistic polarized positrons during interaction of an ultrarelativistic elect...
Gamma-ray beams with large angular momentum are a very valuable tool to study astrophysical phenomen...
Showers of γ rays and positrons are produced when a high-energy electron beam collides with a superi...
Abstract: Generation of energetic electron-positron pairs using multi-petawatt (PW) lasers has recen...
Attosecond light sources have the potential to open up new avenues in ultrafast science. However, th...
Multi-petawatt (PW) lasers enable intensities exceeding 10^23 Wcm^-2, at which point quantum electro...
Electron-positron pairs are produced through the Breit-Wheeler process when energetic photons traver...
Multi-petawatt laser systems will open up a novel interaction regime mixing collective plasma and qu...