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用于产生少周期光脉冲的双光束泵浦非共线光学参量啁啾脉冲放大研究。

Investigation of two-beam-pumped noncollinear optical parametric chirped-pulse amplification for the generation of few-cycle light pulses.

作者信息

Herrmann Daniel, Tautz Raphael, Tavella Franz, Krausz Ferenc, Veisz Laszlo

机构信息

Max-Planck-Institut für Quantenoptik, Hans-Kopfermann-Strasse 1, 85748 Garching, Germany.

出版信息

Opt Express. 2010 Mar 1;18(5):4170-83. doi: 10.1364/OE.18.004170.

Abstract

We demonstrate a new and compact Phi-plane-pumped noncollinear optical parametric chirped-pulse amplification (NOPCPA) scheme for broadband pulse amplification, which is based on two-beam-pumping (TBP) at 532 nm. We employ type-I phase-matching in a 5 mm long BBO crystal with moderate pump intensities to preserve the temporal pulse contrast. Amplification and compression of the signal pulse from 675 nm - 970 nm is demonstrated, which results in the generation of 7.1-fs light pulses containing 0.35 mJ energy. In this context, we investigate the pump-to-signal energy conversion efficiency for TBP-NOPCPA and outline details for few-cycle pulse characterization. Furthermore, it is verified, that the interference at the intersection of the two pump beams does not degrade the signal beam spatial profile. It is theoretically shown that the accumulated OPA phase partially compensates for wave-vector mismatch and leads to extended broadband amplification. The experimental outcome is supported by numerical split-step simulations of the parametric signal gain, including pump depletion and parametric fluorescence.

摘要

我们展示了一种用于宽带脉冲放大的新型紧凑型菲平面泵浦非共线光学参量啁啾脉冲放大(NOPCPA)方案,该方案基于532nm的双光束泵浦(TBP)。我们在一块5mm长的BBO晶体中采用I型相位匹配,并使用适度的泵浦强度来保持时间脉冲对比度。展示了对675nm - 970nm信号脉冲的放大和压缩,结果产生了能量为0.35mJ的7.1飞秒光脉冲。在此背景下,我们研究了TBP - NOPCPA的泵浦到信号的能量转换效率,并概述了少周期脉冲表征的细节。此外,还验证了两束泵浦光束相交处的干涉不会使信号光束的空间轮廓退化。理论表明,累积的OPA相位部分补偿了波矢失配并导致宽带放大扩展。参数信号增益的数值分步模拟(包括泵浦耗尽和参量荧光)支持了实验结果。

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