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Dense electron-positron plasmas and gamma-ray bursts generation by counter-propagating quantum electrodynamics-strong laser interaction with solid targets

机译:通过反向传播量子电动力学-与固体靶的强激光相互作用产生致密的电子-正电子等离子体和伽马射线爆发

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We use quantum electrodynamics (QED) particle-in-cell simulations to investigate and compare the generation of dense electron-positron plasmas and intense c-ray bursts in the case of counter-propagating laser solid interaction (two-side irradiation) and single laser solid interaction (one-side irradiation). In the case of counter-propagating linearly polarized laser pulses irradiating a thin aluminum foil with each pulse peak power of 12.5 PW (I = 4 x 10(23) W/cm(2)), we calculate that about 20% of the laser energy is converted into a burst of gamma-rays with flux exceeding 10(14) s(-1) This would be one of the most intense c-ray sources among those currently available in laboratories. The c-ray conversion efficiency in the case of two-side irradiation is three times higher than in the case of one-side irradiation using a single 12.5 PW laser. Dense electron-positron plasma with a maximum density of 6 x 10(27) m(-3) are generated simultaneously during the two-side irradiation which is eightfold denser compared to the one-side irradiation. The enhancement of the effects in the case of counter-propagating lasers are the results of the symmetrical compression of the foil target and the formation of electric potential and standing wave around the target. Realizing experimentally the proposed counter-propagating QED-strong laser-solid interaction to produce dense electron-positron pairs and prolific c-rays will be made possible by the Extreme Light Infrastructure-Nuclear Physics facility under construction. (C) 2015 AIP Publishing LLC.
机译:我们使用量子电动力学(QED)单元内粒子模拟来研究和比较在反向传播的激光固体相互作用(两侧照射)和单激光的情况下致密的电子-正电子等离子体和强烈的c射线猝发的产生固体相互作用(单面照射)。在反向传播的线性偏振激光脉冲照射薄铝箔时,每个脉冲峰值功率为12.5 PW(I = 4 x 10(23)W / cm(2)),我们计算出大约20%的激光能量被转换为超过10(14)s(-1)的伽马射线爆发。这将是目前实验室中最强的c射线源之一。双面照射情况下的c射线转换效率比使用单个12.5 PW激光器进行侧面照射时的c射线转换效率高三倍。在两侧辐射期间同时生成最大密度为6 x 10(27)m(-3)的致密电子-正电子等离子体,该密度比一侧辐射高八倍。在反向传播激光的情况下,效果的增强是箔靶的对称压缩以及在靶周围形成电势和驻波的结果。通过实验实现拟议的反向传播的QED-强激光-固体相互作用以产生致密的电子-正电子对和多产的c射线,将由正在建设的Extreme Light Infrastructure-Nuclear Physics设施实现。 (C)2015 AIP Publishing LLC。

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