By Ulrich Wittrock
This publication treats the advance and alertness of adaptive optics for and medication. The contributions describe lately built parts for adaptive-optics platforms akin to deformable mirrors, wavefront sensors, and reflect drivers in addition to whole adaptive optical platforms and their functions in and medication. functions diversity from laser-beam forming and adaptive aberration correction for high-power lasers to retinal imaging in ophthalmology. The contributions are in line with shows made on the 4th overseas Workshop on Adaptive Optics in and medication which happened in Münster, Germany, in October 2003. This hugely profitable sequence of workshops on adaptive optics all started in 1997 and keeps with the 5th workshop in Beijing in 2005.
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Extra resources for Adaptive Optics for Industry and Medicine: Proceedings of the 4th International Workshop, Münster, Germany, Oct. 19-24, 2003
P. Y. : Modal liquid crystal wavefront corrector. Opt. URI=OPEX-10-22-1258 5. P. Kotova, P. : Technology and electro-optical properties of modal liquid crystal wavefront correctors. J. Opt. A: Pure Appl. Opt. 5, S231 (2003) 6. M. Loktev, G. Vdovin, I. Guralnik: Operation modes of a liquid crystal modal wavefront corrector. Appl. Opt. 43, 2209 (2004) 7. V. R. P. Y. F. Naumov: Liquid crystal lenses with programmable focal distance. Part I: Theory. Part II: Experiment. Quant. Electr. 29, 256 (1999) 8.
Opt. URI=OPEX-10-22-1258 5. P. Kotova, P. : Technology and electro-optical properties of modal liquid crystal wavefront correctors. J. Opt. A: Pure Appl. Opt. 5, S231 (2003) 6. M. Loktev, G. Vdovin, I. Guralnik: Operation modes of a liquid crystal modal wavefront corrector. Appl. Opt. 43, 2209 (2004) 7. V. R. P. Y. F. Naumov: Liquid crystal lenses with programmable focal distance. Part I: Theory. Part II: Experiment. Quant. Electr. 29, 256 (1999) 8. M. Pham, T. R. M. Sarro: Electrical characteristics of plasma-enhanced chemical vapor deposited silicon carbide thin ﬁlms.
We followed a simple procedure: Fig. 4. Testing set-up with Hartmann sensor 3 Deformable Mirrors with Thermal Actuators 21 Fig. 5. Hartmann test reconstruction of primary aberrations formed by the thermal deformable mirror – – – In the ﬁrst step the mirror was planarized and the correspondent response of the Hartmann sensor was stored in the computer. In the second step this “target” response was modiﬁed to include the response, corresponding to the chosen aberration, and the feedback was closed to compensate for this modiﬁcation.