Conferencia

Zhang, H.; Lizana, A.; Van Eeckhout, A.; Turpin, A.; Iemmi, C.; Márquez, A.; Moreno, I.; Torres-Ruiz, F.A.; Vargas, A.; Pi, F.; Campos, J.; Fournier C.; Georges M.P.; Popescu G. "Dynamic microparticle manipulation through light structures generated by a self-calibrated Liquid Crystal on Silicon display" (2018) Unconventional Optical Imaging 2018. 10677
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Abstract:

This paper is devoted to investigating the application of different dynamic light structures generated by a self-calibrated Liquid Crystal on Silicon (LCoS) display for microparticle manipulation. Two major studies based on implementing different DOEs, to thoroughly characterize the LCoS display and to achieve optical-inspired particle manipulation, are proposed, respectively. On the one hand, we dynamically introduced two diffractive lens based patterns (the Billet-lens configuration and the micro-lens array pattern) on the LCoS display, from which the self-calibration of the studied device is implemented. In this case, both the phase-voltage relation and the surface profile were determined and optimized to the optimal performance for microparticle manipulation. On the other hand, we performed the optical manipulation of microparticles by addressing configurable three-dimensional light structures obtained from different phase driven split-lens configurations initiated by the same but optimized LCoS display. Experimental results demonstrated that, by addressing certain phase distributions on the LCoS display, the microparticle can be trapped in the light cones and manipulated by providing certain continuous split-lens configurations. © COPYRIGHT SPIE. Downloading of the abstract is permitted for personal use only.

Registro:

Documento: Conferencia
Título:Dynamic microparticle manipulation through light structures generated by a self-calibrated Liquid Crystal on Silicon display
Autor:Zhang, H.; Lizana, A.; Van Eeckhout, A.; Turpin, A.; Iemmi, C.; Márquez, A.; Moreno, I.; Torres-Ruiz, F.A.; Vargas, A.; Pi, F.; Campos, J.; Fournier C.; Georges M.P.; Popescu G.
Filiación:Physics Department, Universitat Autònoma de Barcelona, Bellaterra, 08193, Spain
Center of Advanced European Studies and Research, Bonn, 53175, Germany
Universidad de Buenos Aires, Facultad de Ciencias Exactas y Naturales, Departamento de Física, Consejo Nacional de Investigaciones Científicas y Técnicas, Buenos Aires, Argentina
Deptartamento de Física, Ingeniería de Sistemas y Teoría de la Señal, Universidad de Alicante, Ap. 99, Alicante, 03080, Spain
Departamento de Ciencia de Materiales, Óptica y Tecnología Electrónica, Universidad Miguel Hernández de Elche, Elche, 03202, Spain
Universidad de la Frontera, Departamento de Ciencias Físicas, Temuco, 4811230, Chile
Palabras clave:Calibration; Diffractive optical element; Holographic display; Liquid-crystal devices; Optical trapping; Phase modulation; Calibration; Diffractive optical elements; Liquid crystal displays; Liquid crystals; Microlenses; Optical image storage; Optical projectors; Particle optics; Phase modulation; Silicon; Liquid crystal devices; Liquid-crystal-on-silicon displays; Microparticle manipulations; Optical manipulation; Opticaltrapping; Optimal performance; Particle manipulation; Phase distribution; Holographic displays
Año:2018
Volumen:10677
DOI: http://dx.doi.org/10.1117/12.2309385
Título revista:Unconventional Optical Imaging 2018
Título revista abreviado:Proc SPIE Int Soc Opt Eng
ISSN:0277786X
CODEN:PSISD
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_0277786X_v10677_n_p_Zhang

Referencias:

  • Prentis, M., Cable, A., Bjorkholm, J.E., Chu, S., Raab, E.L., Pritchard, D.E., Atomic-density-dependent losses in an optical trap (1988) Opt. Lett, 13 (6), pp. 452-454
  • Ashkin, A., Optical trapping and manipulation of neutral particles using lasers (1997) Proc. Natl. Acad. Sci. U. S. A., 94 (10), pp. 4853-4860
  • Miesner, H.J., Grimm, R., Grieser, M., Habs, D., Schwalm, B., Wolf, A., Efficient, indirect transverse laser cooling of a fast stored ion beam (1996) Phys. Rev. Lett, 77 (4), p. 623
  • Kasevich, M., Chu, S., Atomic interferometry using stimulated raman transitions (1991) Phys. Rev. Lett, 67 (2), p. 181
  • Aminoff, C.G., Steane, A.M., Bouyer, P., Desbiolles, P., Dalibard, J., Cohen-Tannoudji, C., Cesium atoms bouncing in a stable gravitational cavity (1993) Phys. Rev. Lett, 71 (19), p. 3083
  • Renn, M.J., Montgomery, D., Vdovin, O., Anderson, D.Z., Wieman, C.E., Cornell, E.A., Laser-guided atoms in hollow-core optical fibers (1995) Phys. Rev. Lett, 75 (18), p. 3083
  • Ashkin, A., Dziedzic, J.M., Optical trapping and manipulation of viruses and bacteria (1987) Science, 235 (4795), pp. 1517-1520
  • Ashkin, A., Dzeidzic, J.M., Yamane, T., Optical trapping and manipulation of single cells using infrared laser beams (1987) Nature, 330 (6150), p. 769
  • Liang, H., Wright, W.H., Cheng, S., He, W., Berns, W.W., Micromanipulation of chromosomes in ptk2 cells using laser microsurgery (optical scalpel) in combination with laser-induced optical force (optical tweezers) (1993) Exp. Cell Res, 204 (1), pp. 110-120
  • Desyatnikov, A.S., Shvedov, V.G., Rode, A.V., Krolikowski, W., Kivshar, Y.S., Photophoretic manipulation of absorbing aerosol particles with vortex beams: Theory versus experiment (2009) Opt. Express, 17 (10), pp. 8201-8211
  • Shvedov, V.G., Rode, A.V., Izdebskaya, Y.V., Desyatnikov, A.S., Krolikowski, W., Kivshar, Y.S., Giant optical manipulation (2010) Phys. Rev. Lett, 105 (11), p. 118103
  • Shvedov, V.G., Hnatovsky, C., Rode, A.V., Krolikowski, W., Robust trapping and manipulation of airborne particles with a bottle beam (2011) Opt. Express, 19 (18), pp. 17350-17356
  • Shvedov, V., Davoyan, A.R., Hnatovsky, C., Engheta, N., Krolikowski, W., A long-range polarizationcontrolled optical tractor beam (2014) Nat. Photon, 8 (11), pp. 846-850
  • Eckerskorn, N., Bowman, R., Kirian, R.A., Awel, S., Wiedorn, M., Kupper, J., Padgett, M.J., Rode, A.V., Optically induced forces imposed in an optical funnel on a stream of particles in air or vacuum (2015) Phys. Rev. Appl, 4 (6), p. 064001
  • Kovalev, A.A., Kotlyar, V.V., Porfirev, A.P., Optical trapping and moving of microparticles by using asymmetrical laguerre-Gaussian beams (2016) Opt. Lett, 41 (11), pp. 2426-2429
  • Jovanovic, O., Photophoresis: Light induced motion of particles suspended in gas (2009) J Quant Spectrosc Radiat Transf, 110 (10), pp. 889-901
  • Lizana, A., Vargas, A., Turpin, A., Ramírez, C., Estevez, I., Campos, J., Shaping light with split lens configurations (2016) J Opt, 18 (10), p. 105605
  • Zhang, Z., You, Z., Chu, D., Fundamentals of phase-only liquid crystal on silicon (lcos) devices (2014) Light Sci Appl, 3 (10), p. e213
  • Moreno, I., Lizana, A., Campos, J., Márquez, A., Iemmi, C., Yzuel, M.J., Mueller-stokes characterization and optimization of liquid crystal on silicon display showing depo-larization (2008) Opt Express, 16 (3), pp. 1669-1685
  • Zhang, H., Liu, H., Lizana, A., Xu, W., Campos, J., Lu, Z., Methods for the performance enhancement and the error characterization of large diameter ground-based diffractive telescope (2017) Opt. Express, 25 (22), pp. 26662-26677
  • Mu, Q., Cao, Z., Hu, L., Li, D., Xuan, L., Adaptive optics imaging system based on a high resolution liquid crystal on silicon device (2006) Opt. Express, 14 (18), pp. 8013-8018
  • Bowman, R.W., Wright, A.J., Padgett, M.J., An slm-based shack-hartmann wavefront sensor for aberration correction in optical tweezers (2010) J Opt, 12 (12), p. 124004
  • Lizana, A., Márquez, A., Lobato, L., Rodagne, Y., Moreno, I., Iemmi, C., Campos, J., The minimum euclidean distance principle applied to improve the modulation diffraction efficiency in digitally controlled spatial light modulators (2010) Opt Express, 18 (10), pp. 10581-10593
  • Márquez, A., Moreno, I., Iemmi, C., Lizana, A., Campos, J., Yzuel, M.J., Mueller-stokes characterization and optimization of a liquid crystal on silicon display showing depolarization (2008) Opt Express, 16 (3), pp. 1669-1685
  • Lizana, A., Moreno, I., Iemmi, C., Márquez, A., Campos, J., Yzuel, M.J., Time-resolved mueller matrix analysis of a liquid crystal on silicon display (2008) Appl Opt, 47 (23), pp. 4267-4274
  • Rodrigo, J., Alieva, T., Freestyle 3d laser traps: Tools for studying light-driven particle dynamics and beyond (2015) Optica, 2 (9), pp. 812-815
  • Zhang, H., Lizana, A., Iemmi, C., Monroy-Ramírez, F.A., Márquez, A., Moreno, I., Campos, J., Lcos display phase self-calibration method based on diffractive lens schemes (2018) Opt Lasers Eng, 106, pp. 147-154
  • Vargas, J., Uribe-Patarroyo, N., Quiroga, J.A., Alvarez-Herrero, A., Belenguer, T., Optical inspection of liquid crystal variable retarder inhomogeneities (2010) Appl Opt, 49 (4), pp. 568-574
  • Martínez, J.L., Fernández, E.J., Prieto, P.M., Artal, P., Interferometric method for phase calibration in liquid crystal spatial light modulator using a self-generated diffraction-grating (2017) Opt Express, 24 (13), pp. 14159-14171
  • Ramirez, C., Karakus, B., Lizana, A., Campos, J., Polarimetric method for liquid crystal displays characterization in presence of phase fluctuations (2013) Opt Express, 21 (3), pp. 3182-3192
  • Bergeron, A., Gauvin, J., Gagnon, F., Gingras, D., Arsenault, H.H., Doucet, M., Phase calibration and applications of a liquid crystal spatial light modulator (1995) Appl Opt, 34 (23), pp. 5133-5139
  • Engström, D., Milewski, G., Bengtsson, J., Galt, S., Diffraction-based determination of the phase modulation for general spatial light modulators (2006) Appl Opt, 45 (28), pp. 7195-7204
  • Zhang, Z., Lu, G., Francis, T.S., Simple method for measuring phase modulation in liquid crystal televisions (1994) Opt Eng, 33 (9), pp. 3018-3022
  • Schiegerling, J., Dehoog, E., Problems testing diffractive intraocular lenses with shack-hartmann sensors (2008) Appl Opt, 47 (25), pp. 4548-4554
  • Lobato, L., Márquez, A., Lizana, A., Moreno, I., Campos, J., Characterization of a parallel aligned liquid crystal on silicon and its application on a shack-hartmann sensor (2010) Proc. SPIE, 7797, pp. 77970Q-77971Q
  • Lizana, A., Moreno, I., Márquez, A., Iemmi, C., Fernández, E., Campos, J., Yzuel, M.J., Time fluctuations of the phase modulation in a liquid crystal on silicon display: Characterization and effects in diffractive optics (2008) Opt. Express, 16 (21), pp. 16711-16722A4 - CNRS; iCube; Investissements d'Avenvir; Strasbourg the Europtimist; The Society of Photo-Optical Instrumentation Engineers (SPIE); Universite de Strasbourg

Citas:

---------- APA ----------
Zhang, H., Lizana, A., Van Eeckhout, A., Turpin, A., Iemmi, C., Márquez, A., Moreno, I.,..., Popescu G. (2018) . Dynamic microparticle manipulation through light structures generated by a self-calibrated Liquid Crystal on Silicon display. Unconventional Optical Imaging 2018, 10677.
http://dx.doi.org/10.1117/12.2309385
---------- CHICAGO ----------
Zhang, H., Lizana, A., Van Eeckhout, A., Turpin, A., Iemmi, C., Márquez, A., et al. "Dynamic microparticle manipulation through light structures generated by a self-calibrated Liquid Crystal on Silicon display" . Unconventional Optical Imaging 2018 10677 (2018).
http://dx.doi.org/10.1117/12.2309385
---------- MLA ----------
Zhang, H., Lizana, A., Van Eeckhout, A., Turpin, A., Iemmi, C., Márquez, A., et al. "Dynamic microparticle manipulation through light structures generated by a self-calibrated Liquid Crystal on Silicon display" . Unconventional Optical Imaging 2018, vol. 10677, 2018.
http://dx.doi.org/10.1117/12.2309385
---------- VANCOUVER ----------
Zhang, H., Lizana, A., Van Eeckhout, A., Turpin, A., Iemmi, C., Márquez, A., et al. Dynamic microparticle manipulation through light structures generated by a self-calibrated Liquid Crystal on Silicon display. Proc SPIE Int Soc Opt Eng. 2018;10677.
http://dx.doi.org/10.1117/12.2309385