Optical micromanipulation with using binary focusator
R.V. Skidanov, A.P. Porfir’ev

Image Processing Systems Institute of the RAS,
Samara State Aerospace University

Full text of article: Russian language.

Abstract:
It is calculated DOE, allowing form given distribution of the amplitude and phases. These DOE are intended for use in problem optical micromanipulation. The presented experiments on optical trapping microobjects with use specified above element. The presented results of the experiment on optical trapping spherical microobjects in several light beams with given a sharing the phase.

Key words:
optical trapping, focusator, distribution of the phase.

References:

  1. Golub, M.F. Focusing of radiation in the given area of space with using computer designed holograms. / M.A. Golub [and other] // Letters in JTP, 1981. – Vol. 7, N 10. – P. 618-623. – (in Russian).
  2. Goncharskiy, A.V. Decision of the inverse problem of the focusing of the lazer radiation in free curve / A.V. Goncharskiy [and other] // RAS USSR. – 1983. – V. 273, N 3. – P. 605-608. – (in Russian).
  3. Voronzov, M.A.  The calculation focusator of laser radiation in the diffraction theory / M.A. Voronzov, A.N. Matveev, V.P. Sivokon’ // Computer Optics. – 1987. – N 1. – P. 74-78. – (in Russian).
  4. Ageshin, S.F. Using focusator’s in problem of the lazer processing of material / S.F.Ageshin, A.A. Azarov, V.V. Po­pov, I.N. Sisakyan // Computer Optics. – 1988. – N 3. – P. 91-93. – (in Russian).
  5. Sisakyan, I.N. Technological possibilities of the using focusator’s under lazer processing of material / I.N. Sisa­kyan V.P. Shorin, V.A. Soifer, V.I. Mordasov, V.V. Po­pov // Computer Optics. – 1988. – N 3. – P. 94-96. – (in Russian).
  6. Voronzov, M.A. Syntheses focusator’s of radiations in flat area in condition of the nonlinear distortion light beams / M.A. Voronzov, A.V. Razgulin // Computer Optics. – 1989. – N 5. – P. 25-28. – (in Russian).
  7. Berezniy, A.E. Phase elements for focusing of the lazer radiation in flat polygonal areas / A.E. Berezniy, I.A. Shimohin // Computer Optics. – 1988. – N 6. – P. 24-26. – (in Russian).
  8. Pavelyev, V.S. Iterative calculation, realization and study of the element, focusing gausssian illuminating beam in ring focal area / V.S. Pavelyev, V.A. Soifer, M Duparre, R. Kovarshik, B. Ludge, B. Kley, S.V. Karpeyev // Computer Optics. – 1998. – N 18. – P. 111-114. – (in Russian).
  9. Kazansky, N.L. Using focusators radiations when shaping porous structures an solid state materials / N.L. Kazansky S.P. Murzin, V.I. Tregub, A.V. Megenin // Computer Optics. – 1998. – N 31. – P. 48-51. – (in Russian).
  10. Cojoc, D. Multiple Optical Trapping by Means of Diffractive Optical Elements / D. Cojoc [and other] // J. Appl. Phys. – 2004. – N 43. – P. 3910-3915.
  11. J.A. Davis, High diffraction efficiency from one- and two-dimensional Nyquist frequency binary-phase gratings / J.A. Davis, B.A. Slovick, C.S. Tuvey, and D.M. Cottrell // Appl. Optics. – 2008. – Vol. 47, N 15. – P. 2829-2834.
  12. Ohtake, Y. Universal generation of higher-order multiringed Laguerre–Gaussian beams by using a spatial light modulator / Y. Ohtake, T. Ando, N. Fukuchi, N. Matsumoto, H. Ito , and T. Hara // Opt. Lett. – 2007. – Vol. 32, N 11. – P. 1411-1413.
  13. Gibson, G. Holographic assembly workstation for optical manipulation / Gibson G. [and other] // J. Opt. A: Pure Appl. Opt. – 2008. – Vol. 10. – P. 1-6.
  14. Abra­mochkin, E.G. Forming of Helical-wave-front laser beams by light with given by form to intensities for problems of the lazer manipulate microobjects / E.G. Abra­mochkin – Materials XXVI schools on coherent optics and holographies "Holography: fundamental research, innovative projects and nanotechnologies", Irkutsk: Papirus, 2008. – P. 203-207. – (in Russian).
  15. Khonina, S.N. Encoded binary diffractive element to form hyper-geometric laser beams / S.N. Khonina // J. Opt. A: Pure Appl. Opt. – 2009. – Vol. 11. – P. 1-7.

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