Ding Pengji, Mitryukovskiy Sergey, Houard Aurélien, Oliva Eduardo, Couairon Arnaud, Mysyrowicz André, Liu Yi
Opt Express. 2014 Dec 1;22(24):29964-77. doi: 10.1364/OE.22.029964.
Recently, S. Mitryukovskiy et al. presented experimental evidence showing that backward Amplified Spontaneous Emission (ASE) at 337 nm can be obtained from plasma filaments in nitrogen gas pumped by circularly polarized 800 nm femtosecond pulses (Opt. Express, 22, 12750 (2014)). Here, we report that a seed pulse injected in the backward direction can be amplified by ~200 times inside this plasma amplifier. The amplified 337 nm radiation can be either linearly or circularly polarized, dictated by the seeding pulse, which is distinct from the non-polarized nature of the ASE. We performed comprehensive measurements of the spatial profile, optical gain dynamics, and seed pulse energy dependence of this amplification process. These measurements allow us to deduce the pulse duration of the ASE and the amplified 337 nm radiation as well as the corresponding laser intensity inside the plasma amplifier. It indicates that the amplification is largely in the unsaturated regime and that further improvement of laser energy is possible. Moreover, we observed optical gain in plasma created in ambient air. This represents an important step towards future applications exploiting backward lasing for remote atmospheric sensing.
最近,S. Mitryukovskiy等人给出了实验证据,表明在由圆偏振800纳米飞秒脉冲泵浦的氮气中的等离子体细丝中,可以获得337纳米的后向放大自发辐射(ASE)(《光学快报》,22,12750(2014年))。在此,我们报告,注入的反向种子脉冲在该等离子体放大器内可以被放大约200倍。放大后的337纳米辐射可以是线偏振或圆偏振,这由种子脉冲决定,这与ASE的非偏振性质不同。我们对这一放大过程的空间分布、光学增益动力学以及种子脉冲能量依赖性进行了全面测量。这些测量使我们能够推断出ASE和放大后的337纳米辐射的脉冲持续时间以及等离子体放大器内相应的激光强度。这表明放大主要处于不饱和状态,并且激光能量有可能进一步提高。此外,我们在环境空气中产生的等离子体中观察到了光学增益。这代表了朝着利用后向激光进行远程大气传感的未来应用迈出的重要一步。