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A laser-induced repetitive fast neutron source applied for gold activation analysis
Sungman Lee1, Sangsoon Park, Kitae Lee
1Quantum Optics Division, Korea Atomic Energy Research Institute, Daejeon 305-600, South Korea.
A novel laser-driven fast neutron source was developed for nuclear physics research. This source enables gold activation analysis, demonstrating its potential for various scientific applications.
Area of Science:
- Laser-driven nuclear physics
- Fast neutron generation
- Activation analysis
Background:
- Development of compact and efficient neutron sources is crucial for advanced nuclear research.
- Laser-driven fusion offers a pathway to novel neutron production methods.
Purpose of the Study:
- To develop and characterize a laser-induced, repetitively operated fast neutron source.
- To assess the utility of this neutron source for activation analysis.
- To elucidate nuclear reactions involved in gold activation using the developed source.
Main Methods:
- Construction of a laser-induced fast neutron source with a neutron yield of ~4 × 10(5) n/pulse and a 10 Hz repetition rate.
- Application of the neutron source for gold activation analysis.
- Measurement and analysis of delayed gamma spectra from activated gold.
- Identification of nuclear reactions using 14 MeV neutrons from D(t,n)He(4) and D(d,p)T(3) reactions.
Main Results:
- The developed neutron source achieved a neutron yield of approximately 4 × 10(5) n/pulse at a 10 Hz repetition rate.
- Strong delayed gamma spectra of activated gold were measured at 333 keV and 355 keV.
- The feasibility of the neutron source for activation analyses was confirmed.
- Nuclear reactions responsible for the observed gamma spectra were identified.
Conclusions:
- The laser-induced fast neutron source is a viable tool for nuclear physics research and activation analysis.
- The source's performance characteristics are suitable for practical applications.
- Further research can leverage this source for detailed nuclear reaction studies.
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