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Interactions of a Femtosecond Intense Laser with Rare Gas Clusters in a Dense Jet

Interactions of a Femtosecond Intense Laser with Rare Gas Clusters in a Dense Jet
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摘要 A study on the interactions of high intensity (- 1016 W/cm2) femtosecond laser pulses with rare gas clusters in a dense jet is performed. Energy absorption by Ar and Xe clusters is measured and it can be as high as 90%. Very energetic ions produced in the laser interaction with a dense cluster jet are detected by time-of-flight spectrometry and the maximum ion energy of Xe is up to 1.3 MeV. The average ion energies are found to increase with increasing cluster size and get saturated gradually. The average ion energies also show a strong directionality and the average ion energy in the direction parallel to the laser polarization vector is 40% higher than that perpendicular to it. The findings are discussed in terms of a model of charge-dependent ion acceleration. A study on the interactions of high intensity (- 1016 W/cm2) femtosecond laser pulses with rare gas clusters in a dense jet is performed. Energy absorption by Ar and Xe clusters is measured and it can be as high as 90%. Very energetic ions produced in the laser interaction with a dense cluster jet are detected by time-of-flight spectrometry and the maximum ion energy of Xe is up to 1.3 MeV. The average ion energies are found to increase with increasing cluster size and get saturated gradually. The average ion energies also show a strong directionality and the average ion energy in the direction parallel to the laser polarization vector is 40% higher than that perpendicular to it. The findings are discussed in terms of a model of charge-dependent ion acceleration.
出处 《Plasma Science and Technology》 SCIE EI CAS CSCD 2005年第1期2684-2686,共3页 等离子体科学和技术(英文版)
基金 TheprojectsupportedbytheNationalBasicResearchSpecialFoundationofChina(No.G1999075200)theNationalNaturalScienceFoundationofChina(No.29890210)
关键词 atomic clusters femtosecond laser energy absorption high energy ions atomic clusters, femtosecond laser, energy absorption, high energy ions
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