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Broadband nanosecond optical parametric chirped-pulse amplification with a double-sliced pump pulse

机译:宽带纳秒光学参数啁啾脉冲放大,双切泵脉冲

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摘要

We developed a two-stage optical parametric chirped-pulse amplification (OPCPA) amplifier with a double-sliced pump pulse. To utilize a single-longitudinal laser pulse with an 8-ns duration and a 532-nm central wavelength as a high-energy pump source efficiently, two 2-ns quasi-rectangular pump pulses were generated by double-slicing the green pulse with two Pockels cells. The energy and spectral width of the amplified laser pulse with an 820-nm central wavelength were maximized by optimizing the phase matching conditions in the OPCPA amplifier via a 3-D simulation. The amplified laser pulse had a broad bandwidth of 120 nm (FWHM) and a high energy of 75 mJ. And the amplified pulse had an energy stability of 2.14% (RMS) on account of the temporal jittering between the single-mode green pulse and the Pockels cells while the single-mode green pump laser had an energy stability of 1.1% (RMS).
机译:我们开发了一种双级光学参数啁啾脉冲放大(OPCPA)放大器,具有双切泵脉冲。 为了利用具有8-ns持续时间的单纵向激光脉冲和有效地为高能泵浦源的532-nm中心波长,通过双切割两个2-ns准矩形泵脉冲,并用两个双切割绿色脉冲产生 鸟梁细胞。 通过通过3-D仿真优化OPCPA放大器中的相位匹配条件,最大化了具有820nm中心波长的放大激光脉冲的能量和光谱宽度。 放大的激光脉冲具有120nm(fwhm)的宽带宽,高能量为75 mj。 由于单模绿色泵电池之间的时间抖动,因此,扩增的脉冲的能量稳定性为2.14%(RMS),而单模绿色泵浦激光的能量稳定性为1.1%(RMS)。

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