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Laser-to-proton energy transfer efficiency in laser-plasma interactions

机译:激光-质子相互作用中的激光到质子能量转移效率

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摘要

It is shown that the energy of protons accelerated in laser matter inter-action experiments may be significantly increased through the process of splitting the incoming laser pulse into multiple interaction stages of equal intensity. From a thermodynamic point of view, the splitting procedure can be viewed as an effective way of increasing the efficiency of energy transfer from the laser light to protons, which peaks for processes having the least amount of entropy gain. It is predicted that it should be possible to achieve at least a 100% increase in the energy efficiency in a six-stage laser proton accelerator compared with a single laser target interaction scheme.
机译:结果表明,在激光物质相互作用实验中加速的质子能量可以通过将入射的激光脉冲分成相等强度的多个相互作用阶段的过程而显着增加。从热力学的角度来看,分裂过程可以看作是一种提高从激光到质子的能量转移效率的有效方法,这种过程在熵增益最小的过程中达到峰值。可以预计,与单激光目标相互作用方案相比,六级激光质子加速器的能量效率至少应提高100%。

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