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Development of UV Laser Probing Diagnostics for 1-MA Z-Pinches

机译:用于1-MA Z夹的UV激光探测诊断程序的开发

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Laser probing diagnostics at the wavelength of 266 nm were developed for investigation of the 1-MA z-pinch plasmas. The absorption and refraction in plasma are significantly smaller at 266 nm than at the regular wavelength of 532 nm. These features allow observation of fine details in the z-pinch plasma at the ablation, implosion, and stagnation phases. Two-color shadowgraphy at 532/266 nm presents a structure of ablating wires and implosion bubbles in wire arrays. Plasma distribution and dynamics in compact cylindrical, star, and planar wire arrays can be studied at the wavelength of 266 nm. An electron density $N_{e} > 5 cdot 10^{19} hbox{cm}^{-3}$ was reconstructed with interferometry at 266 nm in the stagnated z-pinch. Further development of laser probing diagnostics of the z-pinch plasmas is discussed.
机译:开发了波长为266 nm的激光探测诊断仪,用于研究1-MA z捏合等离子体。在266 nm处,血浆中的吸收和折射比在532 nm常规波长处明显小。这些功能使您可以在消融,内爆和停滞阶段观察z捏合等离子体中的精细细节。在532/266 nm处的两色阴影照相呈现了烧蚀导线和导线阵列中内爆气泡的结构。紧凑型圆柱,星形和平面线阵列中的等离子体分布和动力学可以在266 nm的波长下进行研究。在停滞的z-pinch中,在266 nm处用干涉法重建了电子密度$ N_ {e}> 5 cdot 10 ^ {19} hbox {cm} ^ {-3} $。讨论了z捏合等离子体的激光探测诊断技术的进一步发展。

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