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首页> 外文期刊>Physical Review, A >Propagation of ultrashort resonant ionizing laser pulses in rubidium vapor
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Propagation of ultrashort resonant ionizing laser pulses in rubidium vapor

机译:超超谐振电离激光脉冲在Rubidium蒸汽中的繁殖

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We investigate the propagation of ultrashort laser pulses in atomic rubidium vapor.The pulses are intensive enough to ionize the atoms and are directly resonant with the 780-nm D_2 line.We derive a relatively simple theory for computing the nonlinear optical response of atoms and investigate the competing effects of strong resonant nonlinearity and ionization in the medium using computer simulations.A nonlinear self-channeling of pulse energy is found to produce a continuous plasma channel with complete ionization.We evaluate the length,width,and homogeneity of the resulting plasma channel for various values of pulse energy and initial focusing to identify regimes optimal for applications in plasma-wave accelerator devices such as that being built by the AWAKE collaboration at CERN.Similarities and differences with laser pulse filamentation in atmospheric gases are discussed.
机译:我们研究了超短激光脉冲在原子铷蒸气中的传播。脉冲率为足以电离原子,并且与780nm d_2线直接谐振。我们导出了用于计算原子的非线性光学响应的相对简单的理论和研究 使用计算机模拟的介质中强谐振非线性和电离的竞争效应。发现脉冲能量的非线性自窜,产生具有完全电离的连续等离子体通道。我们评估所得等离子通道的长度,宽度和均匀性 对于脉冲能量和初始聚焦的各种值,以识别用于等离子体波加速器装置中的应用的制度,例如由Cern.siemariarity的唤醒协作构建的等离子体波加速器装置中的应用和激光脉冲丝的差异在大气气体中。

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