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Low Density Plasma Waveguides Driven by Ultrashort (30 fs) and Long (300 ps) Pulses for Laser Wakefield Acceleration

机译:超短(30 fs)和长(300 ps)脉冲驱动的低密度等离子体波导,用于激光韦克菲尔德加速

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We simulate the possibility of scaling channel formation to low densities plasmas of low atomic number gas over a large range of pulse duration including (1) pulses up to 300 ps in duration, using inverse bremsstrahlung (IB) heating and (2) ultrashort pulses up to 100s of femtoseconds for generating tenuous plasmas of centimeter to meter lengths by optical field ionization (OFI) [1]. Results show IB heating up to tens of eV, and channels formed from an initial density of 1×1018 cm-3 with axial densities as low as 1×1017 cm-3, and radius of 50 μm. It has been shown that centimeter-scale waveguides can be generated via OFI heating at densities of approximately 1×1017 cm-3[2]; we show calculations and theory of this channel formation using an axicon. Lastly, we outline the experimental setup to be used in future experiments at the University of Texas Tabletop Terawatt (UT3) facility.
机译:我们使用逆致发光(IB)加热和(2)超短脉冲向上模拟了在较大的脉冲持续时间范围内将通道形成缩放为低原子序数气体的低密度等离子体的可能性,包括(1)持续时间高达300 ps的脉冲可以通过光场电离(OFI)产生100毫微秒的飞秒来产生厘米到米长的微弱等离子体[1]。结果显示IB加热到数十eV,并且通道的初始密度为1×10 \ n 18 \ n cm \ n -3 \ n,轴向密度低至1×10 \ n 17 \ n cm \ n -3 \ n,半径为50μm。已经表明,可以通过OFI加热以大约1×10 \ n 17 \ n cm \ n -3 \ n [2];我们使用轴锥展示了这种通道形成的计算和理论。最后,我们概述了在德克萨斯大学台式兆瓦(UT3)实验室中将用于未来实验的实验装置。

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