[1] R JUAN ANTONIO, B ANICETO, C ADOLFO. Numerical simulation of long-path spherical wave propagation in three-dimensional random media. Optical Engineering, 38, 1462-1469(1999).
[2] Jingsong XIANG. High-frequency error compensation method for the fast fourier transform-based turbulent phase screen. Acta Optica Sinica, 34, 24-28(2014).
[3] Dongmei CAI, Kun WANG, Peng JIA et al. Sampling methods of power spectral density method simulating atmospheric turbulence phase screen. Acta Physica Sinica, 63, 231-236(2014).
[4] B J HERMAN, L A STRUGALA. Method for inclusion of low-frequency contributions in numerical representation of atmospheric turbulence, 1221, 183-192(1990).
[5] R G LANE, A GLINDEMANN, J C DAINTY. Simulation of a Kolmogorov phase screen. Waves in Random Media, 2, 209-224(1992).
[6] M J ERIK, T G B DONALD. Simulation of stellar speckle imaging, 2200, 372-383(1994).
[7] R JAUME, D FEDERICO. Accurate calculation of phase screens for the modelling of laser beam propagation through atmospheric turbulence, 5891, 1-12(2005).
[8] P B WILLIAM, N G RYAN. Turbulence phase screens based on polar-logarithmic spectral sampling. Applied Optics, 52, 4672-4680(2013).
[9] K JONAS, F CHRISTOPH, R SEBASTIAN. A new approach to nonuniform sampling of bounded atmospheric turbulence spectra(2020).
[10] Jingsong XIANG. Fast and accurate simulation of the turbulent phase screen using fast Fourier transform. Optical Engineering, 53, 16-110(2014).
[11] C SORABH, P JYOTIRMAY, N P ANAMPARAMBU et al. Generalized approach to compensate for low- And high-frequency errors in fast Fourier transform-based phase screen simulations. Journal of Astronomical Telescopes, Instruments, and Systems, 7, 025007(2021).
[12] N ROBERTJ. Zernike polynomials and atmospheric turbulence. Journal of the Optical Society of America, 66, 207-211(1976).
[13] R NICOLAS. Atmospheric wavefront simulation using Zernike polynomials. Optical Engineering, 29, 1174-1180(1990).
[14] Lixia CHEN, Xiaochuan HU, Kai HAN et al. Improvement method for fitting high-frequency phase by Zernike polynomials. Acta Optica Sinica, 36, 125-132(2016).
[15] B ALESSANDRO, C ANGELO, M ANDREA. Multiscale stochastic approach for phase screens synthesis. Applied Optics, 50, 4124-4133(2011).
[16] C SCHWARTZ, G BAUM, E N RIBAK. Turbulence-degraded wave fronts as fractal surfaces. Journal of the Optical Society of America A: Optics and Image Science, 11, 444-451(1994).
[17] Jingsong XIANG, Xiaolei ZHANG, Miaomiao ZHANG et al. Generation of infinite turbulent phase screen. High Power Laser and Particle Beams, 24, 1071-1075(2012).
[18] Fan FENG, Changwei LI. Simulation of atmospheric turbulence phase screen based on wavelet analysis. Acta Optica Sinica, 37, 35-43(2017).
[19] G C HOLST, 阎吉祥, 俞信, 解天宝. 光电成像系统性能(2000).
G C HOLST, Jixiang YAN, Xin YU, Tianbao XIE. Electro-optical imaging system performance(2000).