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Generation of high-contrast millijoule pulses by optical parametric chirped-pulse amplification in periodically poled KTiOPO4

机译:在周期性极化的KTiOPO4中通过光学参量chi脉冲放大生成高对比度毫焦耳脉冲

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摘要

A new high-contrast, high-gain optical parametric chirped-pulse amplifier (OPCPA) architecture is demonstrated in periodically poled KTiOPO4 (PPKTP). This architecture overcomes parametric fluorescence contrast limitations of the OPCPA in periodically poled materials. The scheme is based on two passes of a single relay-imaged pump pulse and a free-propagating signal pulse through a 1.5 mm X 5 mm X 7.5 mm PPKTP crystal. The output energy of 1.2 mJ is generated at a center wavelength of 1053 nm by 24 mJ of pump energy. A prepulse contrast level of > 3 X 10(7) was measured with > 10(6) saturated gain in the amplifier. Amplified pulses were compressed to 200 fs. This simple and versatile concept requires only a modest pump energy from a commercial pump laser and represents a possible high-contrast front end for high-energy Nd:glass-based petawatt-class lasers. (c) 2005 Optical Society of America.
机译:在周期性极化的KTiOPO4(PPKTP)中展示了一种新的高对比度,高增益光学参量chi脉冲放大器(OPCPA)架构。这种架构克服了OPCPA在周期性极化材料中的参数荧光对比度限制。该方案基于单个中继成像泵浦脉冲和通过1.5 mm X 5 mm X 7.5 mm PPKTP晶体的自由传播信号脉冲的两次通过。通过24 mJ的泵浦能量在1053 nm的中心波长处产生1.2 mJ的输出能量。在放大器中,以> 10(6)的饱和增益测量了> 3 X 10(7)的预脉冲对比度。放大后的脉冲被压缩到200 fs。这个简单而通用的概念仅需要来自商用泵浦激光器的适中的泵浦能量,并且代表了基于高能Nd:玻璃的petawatt级激光器的可能的高对比度前端。 (c)2005年美国眼镜学会。

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