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中国物理学会期刊

用光学参量啁啾脉冲放大技术产生TW级激光脉冲系统的最优化设计

CSTR: 32037.14.aps.50.1717

OPTIMIZED DESIGN OF A SYSTEM OF GENERATING TERAWATT LASER PULSES BY USE OF OPTICAL PARAMETRIC CHIRPED PULSE AMPLIFICATION

CSTR: 32037.14.aps.50.1717
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  • 用数值模拟的方法,给出了一种适合以纳秒级的高功率钕玻璃激光系统为抽运源的光学参量啁啾脉冲放大(OPCPA)系统的最优化设计.该系统主要由一级LBO预放大器和一级LBO主放大器组成.数值模拟结果表明该系统能够把纳焦级能量的飞秒脉冲放大到焦级,从而产生几十个太瓦(1012W)的脉冲输出.这一结果为进一步利用OPCPA技术放大飞秒脉冲产生拍瓦(1015W)的超短超强激光脉冲输出奠定了基础,从而为强场科学研究提供崭新的技术手段.

     

    Using the numerical method, an optimized design is presented for the generation of peak powers up to ~60 TW with pulse duration ~25 fs using an optical parametric chirped pulse amplifier (OPCPA) pumped by the high-power Nd:glass laser. The OPCPA system consists of an LBO preamplifier and an LBO power amplifier. The numerical simulation results demonstrate that this system can scale the pulse energy at nanojoule level to the joule level and generate terawatt pulses. So it provides great po-tential to efficiently produce and amplify very short femtosecond laser pulses, and can be regarded as a step toward generating petawatt laser pulses using optical parametric chirped pulse amplifiers pumped by powerful nanosecond systems.

     

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