Simulation of nuclear isomer production in laser-induced plasmaOA
Nuclear isomers play essential roles in various fields,including stellar nucleosynthesis,nuclear clocks,nuclear batteries,clean nuclear energy,and-ray lasers.Recent technological advances in high-intensity lasers have made it possible to excite or de-excite nuclear isomers using table-top laser equipment.Utilizing a particle-in-cell code,we investigate the interaction of a laser with a nanowire array and calculate the production rates of the^(73m)Ge(E_(1)=13.3 keV)and^(107m)Ag(E_(1)=93.1 keV)isomers.For^(73m1)Ge,production by Coulomb excitation is found to contribute a peak efficiency of 1.0×10^(19) particles s^(−1)J^(−1),while nuclear excitation by electron capture(NEEC)contributes a peak of 1.65×10^(11)particles s^(−1)J^(−1).These results indicate a high isomeric production ratio,as well as demonstrating the potential for confirming the existence of NEEC,a long-expected but so far experimentally unobserved fundamental process.
Zhiguo Ma;Yumiao Wang;Yi Yang;Youjing Wang;Kai Zhao;Yixin Li;Changbo Fu;Wanbing He;Yugang Ma;
Key Laboratory of Nuclear Physics and Ion-Beam Application(MoE),Institute of Modern Physics,Fudan University,Shanghai 200433,China
物理学
process.isomersexcitation
《Matter and Radiation at Extremes》 2024 (005)
P.1-9 / 9
supported by the National Key Research and Development Program of China(NKPs)(Grant No.2023YFA1606900);the National Natural Science Foundation of China(NSFC)under Grant No.12235003.
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