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Measurements of ultrastrong magnetic fields during relativistic laser-plasma interactions

机译:相对论激光-等离子体相互作用中超强磁场的测量

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Measurements of magnetic fields generated during ultrahigh intensity (>10(19) W cm(-2)), short pulse (0.7-1 ps) laser-solid target interaction experiments are reported. An innovative method is used and the results are compared with particle-in-cell simulations. It is shown that polarization measurements of the self-generated harmonics of the laser can provide a convenient method for diagnosing the magnetic field-and that the experimental measurements indicate the existence of peak fields greater than 340 MG and below 460 MG at such high intensities. In particular, the observation of the X-wave cutoffs and the observed induced ellipticity of the harmonics can provide a reliable method for measuring these fields. These observations are important for evaluating the use of intense lasers in various potential applications and perhaps for understanding the complex physics of exotic astrophysical objects such as neutron stars. (C) 2002 American Institute of Physics. [References: 34]
机译:报告了在超高强度(> 10(19)W cm(-2)),短脉冲(0.7-1 ps)激光-固体目标相互作用实验中产生的磁场的测量结果。使用了一种创新的方法,并将结果与​​单元中的粒子模拟进行了比较。结果表明,激光自生谐波的偏振测量可以为诊断磁场提供一种方便的方法,并且实验测量表明在如此高的强度下存在大于340 MG和小于460 MG的峰值场。特别地,观察X波截止和观察到的谐波的椭圆率可以为测量这些场提供可靠的方法。这些观察对于评估强激光在各种潜在应用中的使用,以及对于理解奇异的天体物理物体(例如中子星)的复杂物理学非常重要。 (C)2002美国物理研究所。 [参考:34]

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