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Linear and Nonlinear Optics of Broad-Band Laser Pulses: Diffraction

机译:宽带激光脉冲的线性和非线性光学:衍射

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摘要

The typical spectrally limited laser pulse in the near-infrared region is narrow-band up to 40–50 fs. Its spectral width Δk is much smaller than the carrying wavenumber k0 (Δk ≪ k0) . For such kinds of pulses, on distances of a few diffraction lengths, the diffraction is of a Fresnel’s type and their evolution can be described correctly in the frame of the well-known paraxial evolution equation. The technology established in 1985 of amplification through chirping of laser pulses triggered remarkable progress in laser optics along with the construction of femtosecond (fs) laser facilities producing high intensity fields of the order of 1015–1021 W/cm2. However, the duration of the pulse was quickly shortened from picoseconds down to 5–6 fs, which have a broad-band nature (Δk ∼ k0). The linear and nonlinear propagation dynamics of broad-band pulses is quite different form their narrow-band counterparts. Here, we review the appropriate theoretical approach to study the evolution of the pulse. Moreover, we shed light on the different diffraction regimes inherent to both narrow-band and broad-band laser pulses and compare them to unveil the main differences. Using this very method, in subsequent papers, we will investigate the influence of the dispersion and nonlinearity on the laser pulse propagation in isotropic media.
机译:近红外区域中典型的光谱受限激光脉冲是高达 40-50 fs 的窄带。它的光谱宽度 Δk 远小于载波数 k0 (Δk ≪ k0) 。对于这类脉冲,在几个衍射长度的距离上,衍射是菲涅耳型的,它们的演化可以在众所周知的近轴演化方程的框架中正确描述。1985 年建立的通过激光脉冲啁啾进行放大的技术引发了激光光学的显着进步,以及飞秒 (fs) 激光设施的建设,产生了 1015-1021 W/cm2 量级的高强度场。然而,脉冲的持续时间很快从皮秒缩短到 5-6 fs,它具有宽带性质 (Δk ∼ k0)。宽带脉冲的线性和非线性传播动力学与窄带脉冲完全不同。在这里,我们回顾了研究脉冲演变的适当理论方法。此外,我们阐明了窄带和宽带激光脉冲固有的不同衍射范围,并对其进行了比较以揭示主要差异。使用这种方法,在后续的论文中,我们将研究色散和非线性对激光脉冲在各向同性介质中传播的影响。

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