Optical sorting of dielectric Rayleigh spherical particles with scattering and standing waves
Optics Express, Vol. 17, Issue 7, pp. 5321-5329 (2009)
http://dx.doi.org/10.1364/OE.17.005321
Acrobat PDF (241 KB)
Abstract
An all optical method for dielectric Rayleigh particle sorting possesses significant advantages. Here, we describe an approach that applies optical scattering forces to translate varied sized particles differentially from a surface followed by the introduction of an optical standing wave to maintain and tighten the positional tolerance of the differentiated particles in the medium. Numerical simulation demonstrates the workability of this scheme; which is highly dependent on Brownian forces typically dominant at this length scale. It also shows the significant impact of temperature and medium viscosity on the operation of this technique.
© 2009 Optical Society of America
1. Introduction
A. R. Todeschini, J. N. Dos Santos, K. Handa, and S. Hakomori, “Ganglioside GM2/GM3 complex affixed on silica nanospheres strongly inhibits cell motility through CD82/cMet-mediated pathway,” Proc. Nat. Acad. Sci. 105, 1925–1930 (2008). [CrossRef] [PubMed]
A. Kosiorek, W. Kandulski, H. Glaczynska, and M. Giersig, “Fabrication of nanoscale rings, dots, and rods by combining shadow nanosphere lithography and annealed polystyrene nanosphere masks,” Small 1, 439–444 (2005). [CrossRef]
A. Jaworek, “Micro- and nanoparticle production by electrospraying,” Powder Technol. 176, 18–35 (2007). [CrossRef]
M.P. MacDonald, G.C. Spalding, and K. Dholakia, “Microfluidic sorting in an optical lattice” Nature 426, 421–424 (2003). [CrossRef] [PubMed]
R. L. Smith, G. C. Spalding, K. Dholakia, and M. P. MacDonald, “Colloidal sorting in dynamic optical lattices,” J. Opt. A 9, S134–S138 (2007). [CrossRef]
T. W. Ng, A. Neild, and P. Heeramann, “Continuous sorting of Brownian particles using coupled photophoresis and asymmetric potential cycling,” Opt. Lett. 33, 584–586 (2008). [CrossRef] [PubMed]
A. S. Zelenina, R. Quidant, G. Badenes, and M. Nieto-Vesperinas, “Tunable optical sorting and manipulation of nanoparticles via plasmon excitation,” Opt. Lett. 31, 2054–2056 (2006). [CrossRef] [PubMed]
P. Zemanek, A. Jonas, L. Sramek, and M. Liska, “Optical trapping of Rayleigh particles using a Gaussian standing wave,” Opt. Commun. 151, 273–285 (1998). [CrossRef]
J. Guck, S. Schinkinger, B. Lincoln, F. Wottawah, S. Ebert, M. Romeyke, D. Lenz, H. M. Erickson, R. Ananthakrishnan, D. Mitchell, J. Käs, S. Ulvickand, and C. Bilby, “Optical Deformability as an Inherent Cell Marker for Testing Malignant Transformation and Metastatic Competence,” Biophys. J. 88, 3689–3698 (2005). [CrossRef] [PubMed]
T. Cizmar, M. Siler, M. Sery, P. Zemanek, V. Garces-Chavez, and K. Dholakia, “Optical sorting and detection of submicrometer objects in a motional standing wave,” Phys. Rev. B 74, 035105 (2006). [CrossRef]
A. Neild, S. Oberti, and J. Dual, “Design, modeling and characterization of microfluidic devices for ultrasonic manipulation,” Sens. Actuators B 121, 452–461 (2007). [CrossRef]
2. Theory and description
Y. Harada and T. Asakura, “Radiation forces on dielectric sphere in the Rayleigh scattering regime,” Opt. Commun. 124, 529–541 (1996). [CrossRef]
Y. Harada and T. Asakura, “Radiation forces on dielectric sphere in the Rayleigh scattering regime,” Opt. Commun. 124, 529–541 (1996). [CrossRef]
P. Zemanek, A. Jonas, L. Sramek, and M. Liska, “Optical trapping of Rayleigh particles using a Gaussian standing wave,” Opt. Commun. 151, 273–285 (1998). [CrossRef]
T. W. Ng, A. Neild, and P. Heeramann, “Continuous sorting of Brownian particles using coupled photophoresis and asymmetric potential cycling,” Opt. Lett. 33, 584–586 (2008). [CrossRef] [PubMed]
S. Abuzeid, A. A. Busnaina, and G. Ahmadi, “Wall Deposition of Aerosol particles in a Turbulent Channel Flow,” J. Aerosol Sci. 22, 43–62 (1991). [CrossRef]
M. D. Summers, D. R. Burnham, and D. McGloin, “Trapping solid aerosols with optical tweezers: A comparison between gas and liquid phase optical traps,” Opt. Express 16, 7739–7747 (2008). [CrossRef] [PubMed]
3. Modeling and results
J. C. Maxwell, “On the viscosity of internal friction of air and other gasses,” Philos. T. Roy. Soc. London 156, 249–268(1866). [CrossRef]
| Temperature (K) | Viscosity (μPa s) | 10% (μm) | Lower Spread (μm) | 50% (μm) | Upper Spread (μm) | 90% (μm) |
|---|---|---|---|---|---|---|
| 100 | 6.66 | 29.1 | 4.4 | 33.5 | 3.1 | 36.6 |
| 200 | 12.79 | 16.4 | 6.4 | 22.8 | 4.0 | 26.8 |
| 293 | 17.70 | 12.2 | 6.4 | 18.6 | 3.6 | 22.2 |
H. A. Kramers, “Brownian motion in a field of force and the diffusion model of chemical reactions,” Physica 7, 284–360 (1940). [CrossRef]
P. Zemánek, A. Jonáš, P. Jákl, J. Ježek, M. Šery, and M. Liška, “Theoretical comparison of optical traps created by standing wave and single beam,” Opt. Commun. 220, 401–412 (2003). [CrossRef]
Y. Harada and T. Asakura, “Radiation forces on dielectric sphere in the Rayleigh scattering regime,” Opt. Commun. 124, 529–541 (1996). [CrossRef]
4. Conclusions
References and links
A. R. Todeschini, J. N. Dos Santos, K. Handa, and S. Hakomori, “Ganglioside GM2/GM3 complex affixed on silica nanospheres strongly inhibits cell motility through CD82/cMet-mediated pathway,” Proc. Nat. Acad. Sci. 105, 1925–1930 (2008). [CrossRef] [PubMed] | |
A. Kosiorek, W. Kandulski, H. Glaczynska, and M. Giersig, “Fabrication of nanoscale rings, dots, and rods by combining shadow nanosphere lithography and annealed polystyrene nanosphere masks,” Small 1, 439–444 (2005). [CrossRef] | |
A. Jaworek, “Micro- and nanoparticle production by electrospraying,” Powder Technol. 176, 18–35 (2007). [CrossRef] | |
M.P. MacDonald, G.C. Spalding, and K. Dholakia, “Microfluidic sorting in an optical lattice” Nature 426, 421–424 (2003). [CrossRef] [PubMed] | |
L. Paterson, E. Papagiakoumou, G. Milne, S. A. Tatarkova, W. Sibbett, F. J. Gunn-Moore, P. E. Bryant, A. C. Riches, and K. Dholakia, “Light induced cell separation in a tailored optical landscape,” Appl. Phys. Lett. 87, 123901 (2005). [CrossRef] | |
Y. Y. Sun, X. C. Yuan, L. S. Ong, J. Bu, S. W. Zhu, and R. Liu, “Large-scale optical traps on a chip for optical sorting” Appl. Phys. Lett. 90, 031107 (2007). [CrossRef] | |
R. W. Applegate, J. Squier, T. Vestad, J. Oakey, and D. W. Marr, “Optical trapping, manipulation, and sorting of cells and colloids in microfluidic systems with diode laser bars,” Opt. Express 12, 4390–4398 (2004). [CrossRef] [PubMed] | |
T. Imasaka, Y. Kawabata, T. Kaneta, and I. Ishidzu, “Optical chromatography,” Anal. Chem. 67, 1763–1765 (1995). [CrossRef] | |
Y. Zhao, B. S. Fujimoto, G. D. Jeffries, P. G. Schiro, and D. T. Chiu, “Optical gradient flow focusing,” Opt. Express 15, 6167–6176 (2007). [CrossRef] [PubMed] | |
T. M. Grzegorczyk, B. A. Kemp, and J. A. Kong, “Passive guiding and sorting of small particles with optical binding forces,” Opt. Lett. 31, 3378–3380 (2006). [CrossRef] [PubMed] | |
M. M. Wang, E. Tu, D. E. Raymond, J. M. Yang, H. Zhang, N. Hagen, B. Dees, E. M. Mercer, A. H. Forster, I. Kariv, P. J. Marchand, and W. F. Butler, “Microfluidic sorting of mammalian cells by optical force switching,” Nat. Biotechnol. 23, 83–87 (2004). [CrossRef] [PubMed] | |
R. L. Smith, G. C. Spalding, K. Dholakia, and M. P. MacDonald, “Colloidal sorting in dynamic optical lattices,” J. Opt. A 9, S134–S138 (2007). [CrossRef] | |
T. W. Ng, A. Neild, and P. Heeramann, “Continuous sorting of Brownian particles using coupled photophoresis and asymmetric potential cycling,” Opt. Lett. 33, 584–586 (2008). [CrossRef] [PubMed] | |
A. S. Zelenina, R. Quidant, G. Badenes, and M. Nieto-Vesperinas, “Tunable optical sorting and manipulation of nanoparticles via plasmon excitation,” Opt. Lett. 31, 2054–2056 (2006). [CrossRef] [PubMed] | |
P. Zemanek, A. Jonas, L. Sramek, and M. Liska, “Optical trapping of Rayleigh particles using a Gaussian standing wave,” Opt. Commun. 151, 273–285 (1998). [CrossRef] | |
J. Guck, S. Schinkinger, B. Lincoln, F. Wottawah, S. Ebert, M. Romeyke, D. Lenz, H. M. Erickson, R. Ananthakrishnan, D. Mitchell, J. Käs, S. Ulvickand, and C. Bilby, “Optical Deformability as an Inherent Cell Marker for Testing Malignant Transformation and Metastatic Competence,” Biophys. J. 88, 3689–3698 (2005). [CrossRef] [PubMed] | |
T. Cizmar, M. Siler, M. Sery, P. Zemanek, V. Garces-Chavez, and K. Dholakia, “Optical sorting and detection of submicrometer objects in a motional standing wave,” Phys. Rev. B 74, 035105 (2006). [CrossRef] | |
A. Neild, S. Oberti, G. Radziwill, and J. Dual, “Simultaneous Positioning of Cells into Two-Dimensional Arrays using Ultrasound,” Biotechnol. Bioeng. 92, 8–14 (2007). | |
A. Neild, S. Oberti, and J. Dual, “Design, modeling and characterization of microfluidic devices for ultrasonic manipulation,” Sens. Actuators B 121, 452–461 (2007). [CrossRef] | |
Y. Harada and T. Asakura, “Radiation forces on dielectric sphere in the Rayleigh scattering regime,” Opt. Commun. 124, 529–541 (1996). [CrossRef] | |
S. Abuzeid, A. A. Busnaina, and G. Ahmadi, “Wall Deposition of Aerosol particles in a Turbulent Channel Flow,” J. Aerosol Sci. 22, 43–62 (1991). [CrossRef] | |
M. D. Summers, D. R. Burnham, and D. McGloin, “Trapping solid aerosols with optical tweezers: A comparison between gas and liquid phase optical traps,” Opt. Express 16, 7739–7747 (2008). [CrossRef] [PubMed] | |
J. C. Maxwell, “On the viscosity of internal friction of air and other gasses,” Philos. T. Roy. Soc. London 156, 249–268(1866). [CrossRef] | |
H. A. Kramers, “Brownian motion in a field of force and the diffusion model of chemical reactions,” Physica 7, 284–360 (1940). [CrossRef] | |
P. Zemánek, A. Jonáš, P. Jákl, J. Ježek, M. Šery, and M. Liška, “Theoretical comparison of optical traps created by standing wave and single beam,” Opt. Commun. 220, 401–412 (2003). [CrossRef] |
OCIS Codes
(140.7010) Lasers and laser optics : Laser trapping
(170.4520) Medical optics and biotechnology : Optical confinement and manipulation
ToC Category:
Optical Tweezers or Optical Manipulation
History
Original Manuscript: January 28, 2009
Revised Manuscript: February 24, 2009
Manuscript Accepted: March 10, 2009
Published: March 19, 2009
Virtual Issues
Vol. 4, Iss. 5 Virtual Journal for Biomedical Optics
Citation
Adrian Neild, Tuck Wah Ng, and Winston Ming Shen Yii, "Optical sorting of dielectric Rayleigh spherical particles with scattering and standing waves," Opt. Express 17, 5321-5329 (2009)
http://www.opticsinfobase.org/oe/abstract.cfm?URI=oe-17-7-5321
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References
- A. R. Todeschini, J. N. Dos Santos, K. Handa, and S. Hakomori, "Ganglioside GM2/GM3 complex affixed on silica nanospheres strongly inhibits cell motility through CD82/cMet-mediated pathway," Proc. Nat. Acad. Sci. 105, 1925-1930 (2008). [CrossRef] [PubMed]
- A. Kosiorek, W. Kandulski, H. Glaczynska, and M. Giersig, "Fabrication of nanoscale rings, dots, and rods by combining shadow nanosphere lithography and annealed polystyrene nanosphere masks," Small 1, 439-444 (2005). [CrossRef]
- A. Jaworek, "Micro- and nanoparticle production by electrospraying," Powder Technol. 176, 18-35 (2007). [CrossRef]
- M. P. MacDonald, G. C. Spalding, and K. Dholakia, "Microfluidic sorting in an optical lattice" Nature 426, 421-424 (2003). [CrossRef] [PubMed]
- L. Paterson, E. Papagiakoumou, G. Milne, S. A. Tatarkova, W. Sibbett, F. J. Gunn-Moore, P. E. Bryant, A. C. Riches, K. Dholakia, "Light induced cell separation in a tailored optical landscape," Appl. Phys. Lett. 87, 123901 (2005). [CrossRef]
- Y. Y. Sun, X. C. Yuan, L. S. Ong, J. Bu, S. W. Zhu, and R. Liu, "Large-scale optical traps on a chip for optical sorting" Appl. Phys. Lett. 90, 031107 (2007). [CrossRef]
- R. W. Applegate, J. Squier, T. Vestad, J. Oakey, and D. W. Marr, "Optical trapping, manipulation, and sorting of cells and colloids in microfluidic systems with diode laser bars," Opt. Express 12, 4390-4398 (2004). [CrossRef] [PubMed]
- T. Imasaka, Y. Kawabata, T. Kaneta, and I. Ishidzu, "Optical chromatography," Anal. Chem. 67, 1763-1765 (1995). [CrossRef]
- Y. Zhao, B. S. Fujimoto, G. D. Jeffries, P. G. Schiro, and D. T. Chiu, "Optical gradient flow focusing," Opt. Express 15, 6167-6176 (2007). [CrossRef] [PubMed]
- T. M. Grzegorczyk, B. A. Kemp, and J. A. Kong, "Passive guiding and sorting of small particles with optical binding forces," Opt. Lett. 31, 3378-3380 (2006). [CrossRef] [PubMed]
- M. M. Wang, E. Tu, D. E. Raymond, J. M. Yang, H. Zhang, N. Hagen, B. Dees, E. M. Mercer, A. H. Forster, I. Kariv, P. J. Marchand, and W. F. Butler, "Microfluidic sorting of mammalian cells by optical force switching," Nat. Biotechnol. 23, 83-87 (2004). [CrossRef] [PubMed]
- R. L. Smith, G. C. Spalding, K. Dholakia, and M. P. MacDonald, "Colloidal sorting in dynamic optical lattices," J. Opt. A, Pure Appl. Opt. 9, S134-S138 (2007). [CrossRef]
- T. W. Ng, A. Neild, and P. Heeramann, "Continuous sorting of Brownian particles using coupled photophoresis and asymmetric potential cycling," Opt. Lett. 33, 584-586 (2008). [CrossRef] [PubMed]
- A. S. Zelenina, R. Quidant, G. Badenes, and M. Nieto-Vesperinas, "Tunable optical sorting and manipulation of nanoparticles via plasmon excitation," Opt. Lett. 31, 2054-2056 (2006). [CrossRef] [PubMed]
- P. Zemanek, A. Jonas, L. Sramek, and M. Liska, "Optical trapping of Rayleigh particles using a Gaussian standing wave," Opt. Commun. 151, 273-285 (1998). [CrossRef]
- J. Guck, S. Schinkinger, B. Lincoln, F. Wottawah, S. Ebert, M. Romeyke, D. Lenz, H. M. Erickson, R. Ananthakrishnan, D. Mitchell, J. Käs, S. Ulvickand, and C. Bilby, "Optical Deformability as an Inherent Cell Marker for Testing Malignant Transformation and Metastatic Competence," Biophys. J. 88, 3689-3698 (2005). [CrossRef] [PubMed]
- T. Cizmar, M. Siler, M. Sery, P. Zemanek, V. Garces-Chavez, and K. Dholakia, "Optical sorting and detection of submicrometer objects in a motional standing wave," Phys. Rev. B 74, 035105 (2006). [CrossRef]
- A. Neild, S. Oberti, G. Radziwill, and J. Dual, "Simultaneous Positioning of Cells into Two-Dimensional Arrays using Ultrasound," Biotechnol. Bioeng. 92, 8-14 (2007).
- A. Neild, S. Oberti, and J. Dual, "Design, modeling and characterization of microfluidic devices for ultrasonic manipulation," Sens. Actuators B 121, 452-461 (2007). [CrossRef]
- Y. Harada and T. Asakura, "Radiation forces on dielectric sphere in the Rayleigh scattering regime," Opt. Commun. 124, 529-541 (1996). [CrossRef]
- S. Abuzeid, A. A. Busnaina, and G. Ahmadi, "Wall Deposition of Aerosol particles in a Turbulent Channel Flow," J. Aerosol Sci. 22, 43-62 (1991). [CrossRef]
- M. D. Summers, D. R. Burnham, and D. McGloin, "Trapping solid aerosols with optical tweezers: A comparison between gas and liquid phase optical traps," Opt. Express 16, 7739-7747 (2008). [CrossRef] [PubMed]
- J. C. Maxwell, "On the viscosity of internal friction of air and other gasses," Philos. Trans. R. Soc. London 156, 249-268 (1866). [CrossRef]
- H. A. Kramers, "Brownian motion in a field of force and the diffusion model of chemical reactions," Physica 7, 284-360 (1940). [CrossRef]
- P. Zemánek, A. Jonáš, P. Jákl, J. Ježek, M. Šery, and M. Liška, "Theoretical comparison of optical traps created by standing wave and single beam," Opt. Commun. 220, 401-412 (2003). [CrossRef]
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