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1
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0000688498
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Internal and near-surface electromagnetic fields for a spherical particle irradiated by a focused laser beam
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J. P. Barton, D. R. Alexander, and S. A. Schaub, “Internal and near-surface electromagnetic fields for a spherical particle irradiated by a focused laser beam, ” J. Appl. Phys. 64, 1632-1639 (1988).
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36549101234
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Internal fields of a spherical particle illuminated by a tightly focused laser beam: Focal point positioning effects at resonance
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J. P. Barton, D. R. Alexander, and S. A. Schaub, “Internal fields of a spherical particle illuminated by a tightly focused laser beam: focal point positioning effects at resonance, ” J. Appl. Phys. 65, 2900-2906 (1989).
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Barton, J.P.1
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3
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36549091673
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Theoretical determination of net radiation force and torque for a spherical particle illuminated by a focused laser beam
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J. P. Barton, D. R. Alexander, and S. A. Schaub, “Theoretical determination of net radiation force and torque for a spherical particle illuminated by a focused laser beam, ” J. Appl. Phys. 66, 4594-4602 (1989).
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Barton, J.P.1
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4
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0026399818
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Electromagnetic field cal culations for a tightly-focused laser beam incident upon a microdroplet: Applications to nonlinear optics
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C. D. Cantrell and C. M. Bowden, eds., Proc. SPIE 1497
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J. P. Barton and D. R. Alexander, “Electromagnetic field cal culations for a tightly-focused laser beam incident upon a microdroplet: applications to nonlinear optics, ” in Nonlinear Optics and Materials, C. D. Cantrell and C. M. Bowden, eds., Proc. SPIE 1497, 64-77 (1991).
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Barton, J.P.1
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5
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20444374897
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Light scattering from a sphere arbitrarily located in a Gaussian beam, using a Bromwich formulation
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G. Gouesbet, B. Maheu, and G. Grehan, “Light scattering from a sphere arbitrarily located in a Gaussian beam, using a Bromwich formulation, ” J. Opt. Soc. Am. A 5, 1427-1443 (1988).
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Gouesbet, G.1
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6
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0028515368
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Rigorous justification of the localized approximation to the beam-shape coefficients in generalized Lorenz-Mie theory. I. On-axis beams
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J. A. Lock and G. Gouesbet, “Rigorous justification of the localized approximation to the beam-shape coefficients in generalized Lorenz-Mie theory. I. On-axis beams, ” J. Opt. Soc. Am. A 11, 2503-2515 (1994).
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Lock, J.A.1
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7
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0028515482
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Rigorous justification of the localized approximation to the beam-shape coefficients in generalized Lorenz-Mie theory. II. Off-axis beams
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G. Gouesbet and J. A. Lock, “Rigorous justification of the localized approximation to the beam-shape coefficients in generalized Lorenz-Mie theory. II. Off-axis beams, ” J. Opt. Soc. Am. A 11, 2516-2525 (1994).
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Gouesbet, G.1
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8
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84975624374
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Near-resonance excitation of dielectric spheres with plane waves and off-axis Gaussian beams
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E. E. M. Khaled, S. C. Hill, P. W. Barber, and D. Q. Chowdhury, “Near-resonance excitation of dielectric spheres with plane waves and off-axis Gaussian beams, ” Appl. Opt. 31, 1166-1169 (1992).
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Khaled, E.E.M.1
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Chowdhury, D.Q.4
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9
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0027554641
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Scattered and internal intensity of a sphere illuminated with a Gaussian beam
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E. E. M. Khaled, S. C. Hill, and P. W. Barber, “Scattered and internal intensity of a sphere illuminated with a Gaussian beam, ” IEEE Trans. Antennas Propag. 41, 295-303 (1993).
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Khaled, E.E.M.1
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10
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0040089708
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Internal electromagnetic energy within a dielectric sphere in a plane-polarized TEM00 laser beam
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00 laser beam, ” J. Opt. Soc. Am. B 6, 1332-1338 (1989).
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Chang, S.1
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11
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84975586059
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Radiation force and torque exerted on a stratified sphere in the circularly polarized TEMj1-mode beam
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1-mode beam, ” J. Opt. Soc. Am. B 5, 61-66 (1988).
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Chang, S.1
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12
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84975609337
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Electromagnetic field for a beam incident on two adjacent spherical particles
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J. P. Barton, W. Ma, S. A. Schaub, and D. R. Alexander, “Electromagnetic field for a beam incident on two adjacent spherical particles, ” Appl. Opt. 30, 4706-4715 (1991).
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Barton, J.P.1
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13
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84975594186
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Radiation forces on a micrometersized sphere in an evanescent field
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E. Almaas and I. Brevik, “Radiation forces on a micrometersized sphere in an evanescent field, ” J. Opt. Soc. Am. B 12, 2429-2438 (1995).
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Almaas, E.1
Brevik, I.2
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14
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36549100873
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Fifth-order corrected electromagnetic field components for a fundamental Gaussian beam
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J. P. Barton and D. R. Alexander, “Fifth-order corrected electromagnetic field components for a fundamental Gaussian beam, ” J. Appl. Phys. 66, 2800-2802 (1989).
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Barton, J.P.1
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16
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84938451651
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Laser beam resonators
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H. Kogelnik and T. Li, “Laser beam resonators, ” Proc. IEEE54, 1312-1329 (1966).
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Kogelnik, H.1
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18
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0005233866
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Electromagnetic fields for an irregularly shaped, near-spherical particle illuminated by a focused laser beam
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J. P. Barton and D. R. Alexander, “Electromagnetic fields for an irregularly shaped, near-spherical particle illuminated by a focused laser beam, ” Appl. Opt. 69, 7973-7986 (1991).
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Barton, J.P.1
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19
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0038083177
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Electromagnetic-field calculations for irregularly shaped, axisymmetric layered particles with focused illumination
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J. P. Barton, “Electromagnetic-field calculations for irregularly shaped, axisymmetric layered particles with focused illumination, ” Appl. Opt. 35, 532-541 (1996).
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Barton, J.P.1
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