Abstract

Electrically stimulated migration of silver ions has been used to fabricate microlens arrays in K8 glasses. A theoretical model has been developed for the dependence of the parameters of the microlenses on the technological regimes for fabricating them. These microlens arrays were used in Shack–Hartmann sensors to determine the wave-front distortions.

© 2013 Optical Society of America

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References

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  1. B. C.  Platt, “History and principles of Shack–Hartmann wave-front sensing,” J. Refract. Surg. 17, 573 (2001).
  2. S. I.  Najafi, ed., Introduction to Glass Integrated Optics (Artech House, Boston, 1992).
  3. V. A.  Nikitin, N. A.  Yakovenko, Electrically Stimulated Ion Migration in Integrated Optics (Izd. KubGU, Krasnodar, 2010).
  4. R.  Oven, “Tapered waveguides produced by ion exchange in glass with a nonuniform electric field,” J. Lightwave Technol. 24, 4337 (2006).
    [CrossRef]
  5. C.  Curatu, G.  Curatu, J.  Rolland, “Fundamental and specific steps in Shack–Hartmann wave-front-sensor design,” Proc. SPIE 6288, 628801 (2006).
    [CrossRef]
  6. D. A.  Kravchenko, “Wave-front reconstruction by the Shack–Hartmann method,” Svidet. Gos. Registr. Prog. ÉVM No. 2012613954 (Russia) (2012).

2006

R.  Oven, “Tapered waveguides produced by ion exchange in glass with a nonuniform electric field,” J. Lightwave Technol. 24, 4337 (2006).
[CrossRef]

C.  Curatu, G.  Curatu, J.  Rolland, “Fundamental and specific steps in Shack–Hartmann wave-front-sensor design,” Proc. SPIE 6288, 628801 (2006).
[CrossRef]

2001

B. C.  Platt, “History and principles of Shack–Hartmann wave-front sensing,” J. Refract. Surg. 17, 573 (2001).

Curatu, C.

C.  Curatu, G.  Curatu, J.  Rolland, “Fundamental and specific steps in Shack–Hartmann wave-front-sensor design,” Proc. SPIE 6288, 628801 (2006).
[CrossRef]

Curatu, G.

C.  Curatu, G.  Curatu, J.  Rolland, “Fundamental and specific steps in Shack–Hartmann wave-front-sensor design,” Proc. SPIE 6288, 628801 (2006).
[CrossRef]

Kravchenko, D. A.

D. A.  Kravchenko, “Wave-front reconstruction by the Shack–Hartmann method,” Svidet. Gos. Registr. Prog. ÉVM No. 2012613954 (Russia) (2012).

Nikitin, V. A.

V. A.  Nikitin, N. A.  Yakovenko, Electrically Stimulated Ion Migration in Integrated Optics (Izd. KubGU, Krasnodar, 2010).

Oven, R.

Platt, B. C.

B. C.  Platt, “History and principles of Shack–Hartmann wave-front sensing,” J. Refract. Surg. 17, 573 (2001).

Rolland, J.

C.  Curatu, G.  Curatu, J.  Rolland, “Fundamental and specific steps in Shack–Hartmann wave-front-sensor design,” Proc. SPIE 6288, 628801 (2006).
[CrossRef]

Yakovenko, N. A.

V. A.  Nikitin, N. A.  Yakovenko, Electrically Stimulated Ion Migration in Integrated Optics (Izd. KubGU, Krasnodar, 2010).

J. Lightwave Technol.

J. Refract. Surg.

B. C.  Platt, “History and principles of Shack–Hartmann wave-front sensing,” J. Refract. Surg. 17, 573 (2001).

Proc. SPIE

C.  Curatu, G.  Curatu, J.  Rolland, “Fundamental and specific steps in Shack–Hartmann wave-front-sensor design,” Proc. SPIE 6288, 628801 (2006).
[CrossRef]

Other

D. A.  Kravchenko, “Wave-front reconstruction by the Shack–Hartmann method,” Svidet. Gos. Registr. Prog. ÉVM No. 2012613954 (Russia) (2012).

S. I.  Najafi, ed., Introduction to Glass Integrated Optics (Artech House, Boston, 1992).

V. A.  Nikitin, N. A.  Yakovenko, Electrically Stimulated Ion Migration in Integrated Optics (Izd. KubGU, Krasnodar, 2010).

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