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Optimization of laser-target parameters for the production of stable lithium beam.

作者信息

Cannavò A, Takahashi K, Okamura M, Ceccio G, Kanesue T, Ikeda S

机构信息

Nuclear Physics Institute of CAS, Rez, 25068 Prague, Czech Republic.

Department of Electrical Engineering, Nagaoka University of Technology, Niigata 940-2188, Japan.

出版信息

Rev Sci Instrum. 2020 Mar 1;91(3):033317. doi: 10.1063/1.5128547.

Abstract

A laser ion source coupled with a radio frequency quadrupole linac accelerator is being proposed as a suitable system for the production of a low energy, high-current stable lithium beam. In order to maximize the lithium yield, plasmas generated by laser ablation of different materials based on lithium (Li, LiOH, and LiNbO) have been characterized by using a Faraday cup and an electrostatic ion analyzer in the time of flight configuration. A wide range of laser power density has been investigated (10-10 W/cm) using two Nd:YAG lasers operating at different wavelengths (1064 nm and 532 nm), pulse durations (6 ns and 17 ns), and maximum energies (1400 mJ and 210 mJ). This paper outlines the pros and cons of the investigated materials by studying how the ion energy, yields, and charge state distributions are modified when the laser power density is changed. Considerable attention has been paid to the higher charge states of oxygen, which may occur with the same mass-to-charge ratio of Li. The analysis has evidenced that LiNbO represents a valid target since it allows minimizing the O/Li ratio down to 2.5% by using a laser power density of 1.8 × 10 W/cm. For such a condition, a Li current of 1.4 mA/cm has been measured.

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