Sakai Yusuke, Takahashi Shnsuke, Komatsu Takanori, Song Inho, Watanabe Masato, Hotta Eiki
Department of Energy Sciences, Tokyo Institute of Technology, 4259-J2-35, Nagatsuta, Midori-ku, Yokohama 226-8502, Japan.
Rev Sci Instrum. 2010 Jan;81(1):013303. doi: 10.1063/1.3276705.
Highly efficient and compact pulsed power supply system for a capillary discharge soft x-ray laser (SXRL) has been developed. The system consists of a 2.2 microF two-stage LC inversion generator, a 2:54 step-up transformer, a 3 nF water capacitor, and a discharge section with a few tens of centimeter length capillary. Adoption of the pulsed transformer in combination with the LC inversion generator enables us to use only one gap switch in the circuit for charging the water capacitor up to about 0.5 MV. Furthermore, step-up ratio of a water capacitor voltage to a LC inversion generator initial charging voltage is about 40 with energy transfer efficiency of about 50%. It also leads to good reproducibility of a capillary discharge which is necessary for lasing a SXRL stably. For the study of the possibility of lasing a SXRL at shorter wavelength in a small laboratory scale, high-density and high-temperature plasma column suitable for the laser can be generated relatively easily with this system.
已开发出用于毛细管放电软X射线激光(SXRL)的高效紧凑脉冲电源系统。该系统由一个2.2微法的两级LC逆变器发生器、一个2:54的升压变压器、一个3纳法的水电容器以及一个带有几十厘米长毛细管的放电部分组成。将脉冲变压器与LC逆变器发生器结合使用,使我们能够在电路中仅使用一个间隙开关,将水电容器充电至约0.5兆伏。此外,水电容器电压与LC逆变器发生器初始充电电压的升压比约为40,能量传输效率约为50%。这也导致了毛细管放电的良好再现性,这对于稳定地激发SXRL是必要的。为了在小型实验室规模下研究在更短波长下激发SXRL的可能性,使用该系统可以相对容易地产生适合该激光的高密度高温等离子体柱。