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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Nonlinear optics with hard X-rays: Harmonic generation and Raman scattering in perfect crystals
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Nonlinear optics with hard X-rays: Harmonic generation and Raman scattering in perfect crystals

机译:带有硬X射线的非线性光学器件:完美晶体中的谐波产生和拉曼散射

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Based on dynamical diffraction theory, we study nonlinear processes in the hard X-ray region. First, we consider the process of frequency doubling in perfect crystals in the general case where the process of Bragg rescattering of the generated harmonic field should be taken into account. The optimum conversion conditions for the Bragg and Laue interaction geometry are determined and the efficiency is calculated. Secondly, we consider the modulation of X-ray diffraction by a wave of coherent optical phonons produced by an intense laser pulse. We show that in the optimum regime the modulation period of the X-ray beam may be even shorter than the period of the excited optical phonons, as a result of higher order Raman scattering. Generation of extremely short X-ray pulses using this technique is discussed. Our results suggest that synchronous interaction schemes analogous to the schemes long known in nonlinear optics can significantly increase the efficiency of nonlinear processes in the hard X-ray region.
机译:基于动态衍射理论,我们研究了硬X射线区域中的非线性过程。首先,在通常情况下,我们要考虑理想晶体中倍频的过程,在这种情况下,应考虑所产生谐波场的布拉格散射过程。确定了布拉格和劳厄相互作用几何的最佳转化条件,并计算了效率。其次,我们考虑由强激光脉冲产生的相干光子波对X射线衍射的调制。我们表明,在最佳状态下,由于高阶拉曼散射,X射线束的调制周期甚至可能比激发光子的周期短。讨论了使用这种技术生成极短的X射线脉冲。我们的结果表明,与非线性光学中长期以来众所周知的方案相似的同步相互作用方案可以显着提高硬X射线区域中非线性过程的效率。

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