von Grafenstein Lorenz, Bock Martin, Ueberschaer Dennis, Zawilski Kevin, Schunemann Peter, Griebner Uwe, Elsaesser Thomas
Opt Lett. 2017 Oct 1;42(19):3796-3799. doi: 10.1364/OL.42.003796.
A mid-infrared (mid-IR) optical parametric chirped pulse amplification (OPCPA) system generating few-cycle pulses with multi-gigawatt peak power at a 1 kHz repetition rate is reported. The system is pumped by a highly stable 2 μm picosecond chirped pulse amplifier based on Ho:YLF gain media to exploit the high nonlinearity of ZnGeP (ZGP) crystals for parametric amplification. The ZGP optical parametric amplification (OPA) is characterized by a high conversion efficiency of >10 %, resulting in 1.3 mJ idler pulses at a center wavelength of 5.1 μm. Employing a dispersion management scheme based only on bulk materials, pulses as short as 160 fs are obtained. By adding a spatial light modulator in the OPCPA setup, the pulses are further recompressed to 75 fs duration which corresponds to less than five optical cycles. Taking into account the pulse energy of 0.65 mJ in this configuration, it translates into a peak power of 7.7 GW. The achieved pulse durations and peak powers, to the best of our knowledge, represent record values for high-energy mid-IR OPCPAs beyond 4 μm.
报道了一种中红外(mid-IR)光参量啁啾脉冲放大(OPCPA)系统,该系统在1kHz重复频率下产生具有数吉瓦峰值功率的少周期脉冲。该系统由基于Ho:YLF增益介质的高度稳定的2μm皮秒啁啾脉冲放大器泵浦,以利用ZnGeP(ZGP)晶体的高非线性进行参量放大。ZGP光参量放大(OPA)的特点是转换效率>10%,在中心波长5.1μm处产生1.3mJ的闲频脉冲。仅采用基于块状材料的色散管理方案,可获得短至160fs的脉冲。通过在OPCPA装置中添加空间光调制器,脉冲进一步压缩至75fs的持续时间,对应于不到五个光学周期。考虑到该配置下的脉冲能量为0.65mJ,其峰值功率为7.7GW。据我们所知,所实现的脉冲持续时间和峰值功率代表了4μm以上高能中红外OPCPA的记录值。