next up previous
Next: About this document ... Up: Holographic optical trapping Previous: Multimode traps

Bibliography

1
A. Ashkin, J. M. Dziedzic, J. E. Bjorkholm, and S. Chu, ``Observation of a single-beam gradient force optical trap for dielectric particles,'' Opt. Lett. 11, 288-290 (1986).

2
A. Ashkin, ``History of optical trapping and manipulation of small-neutral particle, atoms, and molecules,'' IEEE J. Sel. Top. Quantum Elec. 6, 841-856 (2000).

3
E. R. Dufresne and D. G. Grier, ``Optical tweezer arrays and optical substrates created with diffractive optical elements,'' Rev. Sci. Instr. 69, 1974-1977 (1998).

4
M. Reicherter, T. Haist, E. U. Wagemann, and H. J. Tiziani, ``Optical particle trapping with computer-generated holograms written on a liquid-crystal display,'' Opt. Lett. 24, 608-610 (1999).

5
J. Liesener, M. Reicherter, T. Haist, and H. J. Tiziani, ``Multi-functional optical tweezers using computer-generated holograms,'' Opt. Comm. 185, 77-82 (2000).

6
E. R. Dufresne, G. C. Spalding, M. T. Dearing, S. A. Sheets, and D. G. Grier, ``Computer-generated holographic optical tweezer arrays,'' Rev. Sci. Instr. 72, 1810-1816 (2001).

7
J. E. Curtis, B. A. Koss, and D. G. Grier, ``Dynamic holographic optical tweezers,'' Opt. Comm. 207, 169-175 (2002).

8
M. Polin, K. Ladavac, S.-H. Lee, Y. Roichman, and D. G. Grier, ``Optimized holographic optical traps,'' Opt. Express, in press (2005).

9
D. G. Grier, ``A revolution in optical manipulation,'' Nature 424, 810-816 (2003).

10
P. A. Maia Neto and H. M. Nussenzveig, ``Theory of optical tweezers,'' Europhys. Lett. 50, 702-708 (2000).

11
V. Soifer, V. Kotlyar, and L. Doskolovich, Iterative Methods for Diffractive Optical Elements Computation (Taylor & Francis, Bristol, PA, 1997).

12
G. Sinclair, P. Jordan, J. Courtial, M. Padgett, J. Cooper, and Z. J. Laczik, ``Assembly of 3-dimensional structures using programmable holographic optical tweezers,'' Opt. Express 12, 5475-5480 (2004).

13
J. W. Goodman, Introduction to Fourier Optics, 2nd ed. (McGraw-Hill, New York, 1996).

14
M. Meister and R. J. Winfield, ``Novel approaches to direct search algorithms for the design of diffractive optical elements,'' Opt. Comm. 203, 39-49 (2002).

15
J. C. Crocker and D. G. Grier, ``Methods of digital video microscopy for colloidal studies,'' J. Colloid Interface Sci. 179, 298-310 (1996).

16
Y. Roichman and D. G. Grier, ``Holographic assembly of quasicrystalline photonic heterostructures,'' Opt. Express 13, 5434-5439 (2005).

17
H. Melville, G. F. Milne, G. C. Spalding, W. Sibbett, K. Dholakia, and D. McGloin, ``Optical trapping of three-dimensional structures using dynamic holographic optical tweezers,'' Opt. Express 11, 3562-3567 (2003).,

18
P. T. Korda, G. C. Spalding, E. R. Dufresne, and D. G. Grier, ``Nanofabrication with holographic optical tweezers,'' Rev. Sci. Instr. 73, 1956-1957 (2002).

19
P. Jordan, H. Clare, L. Flendrig, J. Leach, J. Cooper, and M. Padgett, ``Permanent 3D microstructures in a polymeric host created using holographic optical tweezers,'' J. Mod. Opt. 51, 627-632 (2004).

20
P. T. Korda, G. C. Spalding, and D. G. Grier, ``Evolution of a colloidal critical state in an optical pinning potential,'' Phys. Rev. B 66, 024504 (2002).

21
K. Mangold, P. Leiderer, and C. Bechinger, ``Phase transitions of colloidal monolayers in periodic pinning arrays,'' Phys. Rev. Lett. 90, 158302 (2003).

22
P. T. Korda, M. B. Taylor, and D. G. Grier, ``Kinetically locked-in colloidal transport in an array of optical tweezers,'' Phys. Rev. Lett. 89, 128301 (2002).

23
K. Ladavac, K. Kasza, and D. G. Grier, ``Sorting by periodic potential energy landscapes: Optical fractionation,'' Phys. Rev. E 70, 010901(R) (2004).

24
M. Pelton, K. Ladavac, and D. G. Grier, ``Transport and fractionation in periodic potential-energy landscapes,'' Phys. Rev. E 70, 031108 (2004).

25
M. P. MacDonald, G. C. Spalding, and K. Dholakia, ``Microfluidic sorting in an optical lattice,'' Nature 426, 421-424 (2003).

26
A. Gopinathan and D. G. Grier, ``Statistically locked-in transport in periodic potential landscapes,'' Phys. Rev. Lett. 92, 130602 (2004).

27
K. Sasaki, M. Koshio, H. Misawa, N. Kitamura, and H. Masuhara, ``Pattern formation and flow control of fine particles by laser-scanning micromanipulation,'' Opt. Lett. 16, 1463-1465 (1991).

28
P. C. Mogensen and J. Glückstad, ``Dynamic array generation and pattern formation for optical tweezers,'' Opt. Comm. 175, 75-81 (2000).

29
J. Leach, G. Sinclair, P. Jordan, J. Courtial, M. J. Padgett, J. Cooper, and J. Laczik, Zsolt, ``3D manipulation of particles into crystal structures using holographic optical tweezers,'' Opt. Express 12, 220-226 (2004).

30
B. A. Koss and D. G. Grier, ``Optical peristalsis,'' Appl. Phys. Lett. 82, 3985-3987 (2003).

31
P. Reimann, ``Brownian motors: Noisy transport far from equilibrium,'' Phys. Rep. 361, 57-265 (2002).

32
S.-H. Lee, K. Ladavac, M. Polin, and D. G. Grier, ``Observation of flux reversal in a symmetric optical thermal ratchet,'' Phys. Rev. Lett. 94, 110601 (2005).

33
M. P. Hughes, ``Strategies fo dielectrophoretic separation in laboratory-on-a-ship systems,'' Electrophoresis 23, 2569-2582 (2002).

34
S.-H. Lee and D. G. Grier, ``Flux reversal in a two-state symmetric optical thermal ratchet,'' Phys. Rev. E 71, 060102(R) (2005).

35
L. Allen, M. W. Beijersbergen, R. J. C. Spreeuw, and J. P. Woerdman, ``Orbital angular-momentum of light and the transformation of Laguerre-Gaussian laser modes,'' Phys. Rev. A 45, 8185-8189 (1992).

36
Z. S. Sacks, D. Rozas, and G. A. Swartzlander, ``Holographic formation of optical-vortex filaments,'' J. Opt. Soc. Am. B 15, 2226-2234 (1998).

37
J. E. Curtis and D. G. Grier, ``Structure of optical vortices,'' Phys. Rev. Lett. 90, 133901 (2003).

38
S. Sundbeck, I. Gruzberg, and D. G. Grier, ``Structure and scaling of helical modes of light,'' Opt. Lett. 30, 477-479 (2005).

39
M. S. Soskin, V. N. Gorshkov, M. V. Vasnetsov, J. T. Malos, and N. R. Heckenberg, ``Topological charge and angular momentum of light beams carrying optical vortices,'' Phys. Rev. A 56, 4064-4075 (1997).

40
H. He, M. E. J. Friese, N. R. Heckenberg, and H. Rubinsztein-Dunlop, ``Direct observation of transfer of angular momentum to absorptive particles from a laser beam with a phase singularity,'' Phys. Rev. Lett. 75, 826-829 (1995).

41
H. He, N. R. Heckenberg, and H. Rubinsztein-Dunlop, ``Optical particle trapping with higher-order doughnut beams produced using high efficiency computer generated holograms,'' J. Mod. Opt. 42, 217-223 (1995).

42
K. T. Gahagan and G. A. Swartzlander, ``Optical vortex trapping of particles,'' Opt. Lett. 21, 827-829 (1996), original description of optical vortex.

43
N. B. Simpson, L. Allen, and M. J. Padgett, ``Optical tweezers and optical spanners with Laguerre-Gaussian modes,'' J. Mod. Opt. 43, 2485-2491 (1996).

44
A. T. O'Neil and M. J. Padgett, ``Three-dimensional optical confinement of micron-sized metal particles and the decoupling of the spin and orbital angular momentum within an optical spanner,'' Opt. Comm. 185, 139-143 (2000).

45
A. T. O'Neil, I. MacVicar, L. Allen, and M. J. Padgett, ``Intrinsic and extrinsic nature of the orbital angular momentum of a light beam,'' Phys. Rev. Lett. 88, 053601 (2002).

46
J. E. Curtis and D. G. Grier, ``Modulated optical vortices,'' Opt. Lett. 28, 872-874 (2003).

47
K. Ladavac and D. G. Grier, ``Microoptomechanical pump assembled and driven by holographic optical vortex arrays,'' Opt. Express 12, 1144-1149 (2004).

48
C.-S. Guo, X. Liu, J.-L. He, and H.-T. Wang, ``Optimal annulus structures of optical vortices,'' Opt. Express 12, 4625-4634 (2004).

49
K. Ladavac and D. G. Grier, ``Colloidal hydrodynamic coupling in concentric optical vortices,'' Europhys. Lett. 70, 548-554 (2005).

50
A. Jesacher, S. Furhpater, S. Bernet, and M. Ritsch-Marte, ``Size selective trapping with optical "cogwheel" tweezers,'' Opt. Express 12, 4129-4135 (2004).

51
J. Arlt, V. Garces-Chavez, W. Sibbett, and K. Dholakia, ``Optical micromanipulation using a Bessel light beam,'' Opt. Comm. 197, 239-245 (2001).

52
V. Garces-Chavez, D. McGloin, H. Melville, W. Sibbett, and K. Dholakia, ``Simultaneous micromanipulation in multiple planes using a self-reconstructing light beam,'' Nature 419, 145-147 (2002).

53
C. A. Alonzo, P. J. Rodrigo, and J. Glückstad, ``Helico-conical optical beams: a product of helical and conical phase fronts,'' Opt. Express 13, 1749-1760 (2005).



David G. Grier 2005-07-22