Published January 1, 2021 | Version v1
Journal article Open

Plasma scale length and quantum electrodynamics effects on particle acceleration at extreme laser plasmas

  • 1. Karamanoglu Mehmetbey Univ, Dept Phys, TR-70200 Karaman, Turkey
  • 2. Karamanoglu Mehmetbey Univ, Vocat Sch Hlth Serv, TR-70200 Karaman, Turkey

Description

In this work, simulations of multipetawatt lasers at irradiances similar to 10(23) W cm(-2), striking solid targets and implementing two-dimensional particle-in-cell code was used to study particle acceleration. Preformed plasma at the front surface of a solid target increases both the efficiency of particle acceleration and the reached maximum energy by the accelerated charged particles via nonlinear plasma processes. Here, we have investigated the preformed plasma scale length effects on particle acceleration in the presence and absence of nonlinear quantum electrodynamic (QED) effects, including quantum radiation reaction and multiphoton Breit-Wheeler pair production, which become important at irradiances similar to 10(23) W cm(-2). Our results show that QED effects help particles gain higher energies with the presence of preformed plasma. In the results for all cases, preplasma leads to more efficient laser absorption and produces more energetic charged particles, as expected. In the case where QED is included, however, physical mechanisms changed and generated secondary particles (gamma-rays and positrons) reversing this trend. That is, the hot electrons cool down due to QED effects, while ions gain more energy due to different acceleration methods. It is found that more energetic gamma-rays and positrons are created with increasing scale length due to high laser conversion efficiency (similar to 24% for gamma-rays and similar to 4% for positrons at L = 7 mu m scale length), which affects the ion and electron acceleration mechanisms. It is also observed that the QED effect reduces the collimation of angular distribution of accelerated ions because the dominant ion acceleration mechanism is changing when QED is involved in the process.

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