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The features of electrical current in the x-ray source based on the vacuum diode with the laser-plasma cathode

机译:基于带有真空等离子体阴极的真空二极管的X射线源中的电流特征

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Instabilities of the discharge, as well as temporal and energetic characteristics of x-ray radiation a source based on the vacuum diode with laser-plasma cathode in a wide range of energies, power densities, duration of plasma forming laser pulse, have been experimentally studied. It has been observed that the characteristics of laser radiation significantly affect the dynamics of vacuum discharge and allow to control radiation processes at the early stages of its development. The minimum recorded duration of x-ray pulse (with photon number 10~(11) per pulse) in titanium K-shells (~4,5 keV) was 10 ns in the case of generation of plasma cathode using laser radiation with the duration of 27 ps and intensity ~10~(13) W/cm~2. It has been established that in the regime of instability suppression and at the application of accelerating voltage (about 3-4 tunes the excitation threshold), the maximum value of contrast of characteristic radiation over Bremsstrahlung is achieved.
机译:已经通过实验研究了放电的不稳定性以及X射线辐射的时间和能量特性,该源是基于具有激光等离子体阴极的真空二极管的光源,具有广泛的能量,功率密度,等离子体形成激光脉冲的持续时间。 。已经观察到,激光辐射的特征显着影响真空放电的动力学,并允许在其发展的早期阶段控制辐射过程。在使用激光辐射产生等离子阴极的情况下,钛K壳(〜4,5 keV)中X射线脉冲(每个脉冲的光子数为10〜(11))的最小记录持续时间为10 ns 27 ps和强度〜10〜(13)W / cm〜2。已经确定的是,在不稳定性抑制的情况下以及在施加加速电压时(大约3-4调谐激励阈值),实现了over致辐射上方特征辐射对比度的最大值。

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