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Generation and regulation of electromagnetic pulses generated by femtosecond lasers interacting with multitargets

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摘要 Ultrashort and powerful laser interactions with a target generate intense wideband electromagnetic pulses(EMPs).In this study,we report EMPs generated by the interactions between petawatt(30 fs,1.4×10^(20) W/cm^(2))femtosecond(fs)lasers with metal flat,plastic flat,and plastic nanowire-array(NWA)targets.Detailed analyses are conducted on the EMPs in terms of their spatial distribution,time and frequency domains,radiation energy,and protection.The results indicate that EMPs from metal targets exhibit larger amplitudes at varying angles than those generated by other types of targets and are enhanced significantly for NWA targets.Using a plastic target holder and increasing the laser focal spot can significantly decrease the radiation energy of the EMPs.Moreover,the composite shielding materials indicate an effective shielding effect against EMPs.The simulation results show that the NWA targets exert a collimating effect on thermal electrons,which directly affects the distribution of EMPs.This study provides guidance for regulating EMPs by controlling the laser focal spot,target parameters,and target rod material and is beneficial for electromagnetic-shielding design.
出处 《Nuclear Science and Techniques》 SCIE EI CAS CSCD 2024年第1期96-107,共12页 核技术(英文)
基金 This work was supported by the National Natural Science Foundation of China(Nos.12122501,11975037,61631001,and 11921006) the National Grand Instrument Project(Nos.2019YFF01014400,2019YFF01014404) the Foundation of Science and Technology on Plasma Physics Laboratory(No.6142A04220108).
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