Smith G, Damzen M J
The Blackett Laboratory, Imperial College London, London SW7 2BW, UK.
Opt Express. 2007 May 14;15(10):6458-63. doi: 10.1364/oe.15.006458.
An investigation is made into a quasi-CW (QCW) diode-pumped holographic adaptive laser utilising an ultra high gain (approximately 10(4)) Nd:YVO(4) bounce amplifier. The laser produces pulses at 1064 nm with energy approximately 0.6 mJ, duration <3 ns and peak power approximately 200 kW, with high stability, via self-Q-switching effects due to the transient dynamics of the writing and replay of the gain hologram for each pump pulse. The system produces a near-diffraction-limited output with M(2)<1.3 and operates with a single longitudinal mode. In a further adaptive laser configuration, the output was amplified to obtain pulses of approximately 5.6 mJ energy, approximately 7 ns duration and approximately 1 MW peak power. The output spatial quality is also M(2)<1.3 with SLM operation. Up to 2.9 mJ pulse energy of frequency doubled green (532 nm) radiation is obtained, using an LBO crystal, representing approximately 61% conversion efficiency. This work shows that QCW diode-pumped self-adaptive holographic lasers can provide a useful source of high peak power, short duration pulses with excellent spatial quality and narrow linewidth spectrum.
对一种准连续波(QCW)二极管泵浦全息自适应激光器进行了研究,该激光器利用超高增益(约10⁴)的Nd:YVO₄ 反射放大器。通过每个泵浦脉冲增益全息图写入和重放的瞬态动力学产生的自调Q效应,该激光器产生波长为1064 nm的脉冲,能量约为0.6 mJ,持续时间<3 ns,峰值功率约为200 kW,具有高稳定性。该系统产生近衍射极限输出,M²<1.3,并以单纵模运行。在另一种自适应激光配置中,输出被放大以获得能量约为5.6 mJ、持续时间约为7 ns、峰值功率约为1 MW 的脉冲。采用空间光调制器(SLM)运行时,输出空间质量也为M²<1.3。使用LBO晶体可获得高达2.9 mJ脉冲能量的倍频绿色(532 nm)辐射,转换效率约为61%。这项工作表明,QCW二极管泵浦自适应性全息激光器可以提供一种有用的高峰值功率、短持续时间脉冲源,具有优异的空间质量和窄线宽光谱。