Rashidian Vaziri Mohammad Reza
Laser and Optics Research School, Tehran, Iran.
Appl Opt. 2013 Jul 10;52(20):4843-8. doi: 10.1364/AO.52.004843.
In this paper, the Z-scan theory for nonlocal nonlinear media has been further developed when nonlinear absorption and nonlinear refraction appear simultaneously. To this end, the nonlinear photoinduced phase shift between the impinging and outgoing Gaussian beams from a nonlocal nonlinear sample has been generalized. It is shown that this kind of phase shift will reduce correctly to its known counterpart for the case of pure refractive nonlinearity. Using this generalized form of phase shift, the basic formulas for closed- and open-aperture beam transmittances in the far field have been provided, and a simple procedure for interpreting the Z-scan results has been proposed. In this procedure, by separately performing open- and closed-aperture Z-scan experiments and using the represented relations for the far-field transmittances, one can measure the nonlinear absorption coefficient and nonlinear index of refraction as well as the order of nonlocality. Theoretically, it is shown that when the absorptive nonlinearity is present in addition to the refractive nonlinearity, the sample nonlocal response can noticeably suppress the peak and enhance the valley of the Z-scan closed-aperture transmittance curves, which is due to the nonlocal action's ability to change the beam transverse dimensions.
本文进一步发展了非局域非线性介质的Z扫描理论,该理论适用于非线性吸收和非线性折射同时出现的情况。为此,对非局域非线性样品中入射高斯光束和出射高斯光束之间的非线性光致相移进行了推广。结果表明,对于纯折射非线性的情况,这种相移将正确地简化为其已知形式。利用这种推广的相移形式,给出了远场中闭孔和开孔光束透过率的基本公式,并提出了一种解释Z扫描结果的简单方法。在该方法中,通过分别进行开孔和闭孔Z扫描实验,并利用所给出的远场透过率关系,可以测量非线性吸收系数、非线性折射率以及非局域阶数。理论上表明,当除了折射非线性外还存在吸收非线性时,样品的非局域响应可以显著抑制Z扫描闭孔透过率曲线的峰值并增强谷值,这是由于非局域作用改变光束横向尺寸的能力所致。