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RADIATION DOSE MEASUREMENTS FOR HIGH-INTENSITY LASER INTERACTIONS WITH SOLID TARGETS AT SLAC.

T Liang1,2, J Bauer3, M Cimeno3

  • 1SLAC National Accelerator Laboratory, Menlo Park, CA, USA tliang6@slac.stanford.edu.

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This summary is machine-generated.

Researchers studied photon and neutron radiation doses from high-intensity laser-solid interactions at SLAC National Accelerator Laboratory. Measurements were taken using various detectors during experiments with a powerful femtosecond laser.

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Area of Science:

  • Physics
  • Nuclear Physics
  • Plasma Physics

Background:

  • High-intensity laser-solid interactions generate significant photon and neutron radiation.
  • Understanding radiation doses is crucial for safety and experimental design in such facilities.

Purpose of the Study:

  • To systematically study and quantify photon and neutron radiation doses.
  • To characterize radiation fields produced in laser-driven experiments at SLAC MEC.

Main Methods:

  • Experiments conducted at SLAC MEC using a 25 TW femtosecond pulsed Ti:sapphire laser.
  • Radiation dose measurements performed with passive and active detectors.
  • Detector placement at various locations within and outside the target chamber.

Main Results:

  • Detailed results of radiation dose measurements from 2014 experiments are presented.
  • Data covers peak laser intensities ranging from 10^18 to 7.1 x 10^19 W cm^-2.
  • Analysis of photon and neutron radiation levels under specific experimental conditions.

Conclusions:

  • The study provides essential data on radiation generation in high-intensity laser-solid interactions.
  • Findings contribute to radiation safety protocols and future experimental planning.
  • Establishes a baseline for understanding radiation environments at facilities like SLAC MEC.