Cite

Platt, B. C., Shack, R. (2001). History and principles of Shack-Hartmannn wavefront sensing. Journal of Refractive Surgery, 17 (9-10), S573-S577.10.3928/1081-597X-20010901-13Search in Google Scholar

Rimmele, T. R. (2004). Recent advances in solar adaptive optics. In Proceedings of the SPIE. Vol. 5490, 34-46.10.1117/12.551764Search in Google Scholar

Lukin, V. P., Antoshkin, L. V., Botygina, N. N., Emaleev, O. N., Konyaev, P. A. (2006). Adaptive optical system for solar telescope. Optical Magazine, 73 (3), 55-60.Search in Google Scholar

Canovas, C., Ribak, E. N. (2007). Comparison of Hartmannn analysis methods. Applied Optics, 46 (10), 1830-1835.Search in Google Scholar

Woger, F., Rimmele, T. R. (2009). Effect of anisoplanatism on the measurement accuracy of an extended source Hartmannn-Shack wavefront sensor. Applied Optics, 48 (1), A35-A46.Search in Google Scholar

Lukin, V. P., Antoshkin, L. V., Botygina, N. N., Emaleev, O. N., Grigor'ev, V. M., Konyaev, P. A., Kovadlo, P. G., Skomorovski, V. I., Yankov, A. P. (2006). Adaptive system of tip-tilt correction of image with modified correlation tracker for BSVT. Instrumentation, Mesure, Métrologie, 6 (1-4), 219-223.Search in Google Scholar

Lukin, V. P., Botygina, N. N., Emaleev, O. N., Korolkov, V. P., Lavrinova, L. N., Nasyrov, R. K., Poleshchuk, A. G., Cherkashin V. V. (2009). Shack-Hartmannn sensor based on a low-aperture off-axis diffraction lens array. Avtometriya, 45 (2), 88-98.Search in Google Scholar

Singleton, R. C. (1969). An algorithm for computing the mixed radix fast Fourier transform. IEEE Transactions on Audio and Electroacoustics, AU-17 (N2), 93-103.10.1109/TAU.1969.1162042Search in Google Scholar

Knutsson, P. A., Owner-Petersen, M. (2005). Extended object wave front sensing based on the correlation spectrum phase. Optics Express, 13 (23), 9527-9536.10.1364/OPEX.13.009527Search in Google Scholar

Pioneer, L. A., Gavel, D. T., Brase, J. M. (2002). Fast wave-front reconstruction in large adaptive optics systems with use of the Fourier transform. Journal of the Optical Society of America A, 19 (10), 2100-2111.10.1364/JOSAA.19.002100Search in Google Scholar

Carmon, Y., Ribak, E. N. (2003). Phase retrieval by demodulation of a Hartmann-Shack sensor. Optics Communications, 215, 285-288.10.1016/S0030-4018(02)02254-XSearch in Google Scholar

Freischlad, K. R., Koliopoulus, C. L. (1986). Modal estimation of a wave front from difference measurements using the discrete Fourier transform. Journal of the Optical Society of America A, 3 (11), 1852-1861.10.1364/JOSAA.3.001852Search in Google Scholar

Pritt, M. D., Shipman, J. S. (1994). Least-squares two-dimensional phase unwrapping using FFT's. IEEE Transactions on Geoscience and Remote Sensing, 32 (3), 706-708.10.1109/36.297989Search in Google Scholar

Korolkov, V. P., Poleshchuk, A. G., Nasyrov, R. K. et al. (2007). Application of off-axis microlens array in low aperture Shack-Hartmannn sensor. In EOS Topical Meeting on Diffractive Optics, 20-23 November 2007. Barcelona, 240-241.Search in Google Scholar

eISSN:
1335-8871
Idioma:
Inglés
Calendario de la edición:
6 veces al año
Temas de la revista:
Engineering, Electrical Engineering, Control Engineering, Metrology and Testing