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Acceleration of multiply charged ions by a high-contrast femtosecond laser pulse of relativistic intensity from the front surface of a solid target

机译:从固体靶材的前表面通过相对论强度的高对比度飞秒激光脉冲加速多电荷离子

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摘要

It is shown that the acceleration efficiency of protons and multiply charged ions (and also the charge composition of the latter) accelerated backwards under irradiation of the front surface of thick solid targets by high-power femtosecond laser radiation with an intensity of 2 x 10(18) W cm(-2) is determined by the contrast of this radiation. Thus, highly ionised ions up to C6+, Si12+ and Mo14+ are recorded on polyethylene, silicon and molybdenum targets at a contrast of 10(-8), the ions with charges up to C5+, Si10+ and Mo10+ possessing an energy of more than 100 keV per unit charge. In the case of a metal target, the acceleration efficiency of protons is significantly reduced, which indicates cleaning of the target surface by a pre-pulse. The measurements performed at a contrast increased by two-to-three orders of magnitude show the presence of fast protons (up to 300-700 keV) on all targets, and also a decrease in the energy and maximum charge of multiply charged ions.
机译:结果表明,在厚固体靶材的前表面通过强度为2 x 10(10)的高功率飞秒激光辐射对质子和多重带电离子(以及后者的电荷组成)的加速效率向后加速。 18)W cm(-2)由该辐射的对比度确定。因此,在聚乙烯,硅和钼靶材上以10(-8)的对比度记录了高达C6 +,Si12 +和Mo14 +的高度电离的离子,电荷高达C5 +,Si10 +和Mo10 +的离子拥有的能量大于100 keV。每单位收费。在金属靶的情况下,质子的加速效率显着降低,这表明通过预脉冲清洁了靶表面。以增加了两个到三个数量级的对比度进行的测量表明,所有目标上均存在快速质子(高达300-700 keV),并且多电荷离子的能量和最大电荷降低。

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