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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Robust generation of Fourier-synthesized laser fields and their estimation of the optical phase by using quantum control of molecular tunneling ionization
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Robust generation of Fourier-synthesized laser fields and their estimation of the optical phase by using quantum control of molecular tunneling ionization

机译:通过使用分子隧穿电离的量子控制,傅立叶合成激光场的鲁棒产生及其对光学相的估计

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摘要

Intense (5.0 x 10(12) W cm(-2)) nanosecond Fourier-synthesized laser fields consisting of fundamental, second-, third-, and fourth-harmonic light generated by an interferometer-free Fourier-synthesized laser field generator induce orientation-selective ionization based on directionally asymmetric molecular tunneling ionization (TI). The laser field generator ensures adjustment-free operation, high stability, and high reproducibility. Phase-sensitive, orientation-selective molecular TI provides a simple way to estimate the relative phase differences between the fundamental light and each harmonic by data-fitting analysis. This application of Fourier-synthesized laser fields will facilitate not only lightwave engineering but also the control of matter.
机译:强烈(5.0 x 10(12)W cm(-2))纳秒傅立叶合成激光场,由无干涉仪的傅里叶合成激光场发生器产生的基本,第二次,第三和第四次谐波光,诱导方向产生 基于定向不对称的分子隧穿电离(Ti)的选择性电离。 激光场发生器确保无调节操作,高稳定性和高再现性。 相敏感,取向选择分子Ti提供了一种简单的方法来估计基本光与每个谐波之间的相对相差通过数据拟合分析。 这种对傅立叶合成激光场的应用不仅可以便于灯具工程,而且有助于控制物质。

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