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1
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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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2
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0023966464
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A concise presentation of the generalized Lorenz-Mie theory for arbitrary location of the scatterer in an arbitrary incident profile
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B. Maheu, G. Gouesbet, and G. Grehan, “A concise presentation of the generalized Lorenz-Mie theory for arbitrary location of the scatterer in an arbitrary incident profile,” J. Opt. (Paris) 19, 59–67 (1988).
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J. Opt. (Paris)
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Maheu, B.1
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3
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0038902762
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Generalized Lorenz-Mie theory and applications to optical sizing
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N. Chigier, edHemisphere, New York, Chap. 10
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G. Gouesbet, G. Grehan, and B. Maheu, “Generalized Lorenz-Mie theory and applications to optical sizing,” in Combustion Measurements, N. Chigier, ed. (Hemisphere, New York, 1991), Chap. 10, pp. 339–384.
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(1991)
Combustion Measurements
, pp. 339-384
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Gouesbet, G.1
Grehan, G.2
Maheu, B.3
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4
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0028378125
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Generalized Lorenz-Mie theory and applications
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G. Gouesbet, “Generalized Lorenz-Mie theory and applications,” Part. Part. Syst. Charact. 11, 22–34 (1994).
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Part. Part. Syst. Charact.
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, pp. 22-34
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Gouesbet, G.1
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5
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84975575676
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Electromagnetic scattering from a multilayered sphere located in an arbitrary beam
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F. Onofri, G. Grehan, and G. Gouesbet, “Electromagnetic scattering from a multilayered sphere located in an arbitrary beam,” Appl. Opt. 34, 7113–7124 (1995).
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(1995)
Appl. Opt.
, vol.34
, pp. 7113-7124
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Onofri, F.1
Grehan, G.2
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6
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0031166234
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Interaction between an infinite cylinder and an arbitrary shaped beam
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G. Gouesbet, “Interaction between an infinite cylinder and an arbitrary shaped beam,” Appl. Opt. 36, 4292–4304 (1997).
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Appl. Opt.
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Gouesbet, G.1
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7
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0030502879
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The separability theorem in terms of distributions with discussion of electromagnetic scattering theory
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E. Lenglart and G. Gouesbet, “The separability theorem in terms of distributions with discussion of electromagnetic scattering theory,” J. Math. Phys. 37, 4705–4710 (1996).
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J. Math. Phys.
, vol.37
, pp. 4705-4710
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Lenglart, E.1
Gouesbet, G.2
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8
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0042797152
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Scattering of a Gaussian beam by an infinite cylinder in GLMT-framework: Formulation and numerical results
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K. F. Ren, G. Grehan, and G. Gouesbet, “Scattering of a Gaussian beam by an infinite cylinder in GLMT-framework: formulation and numerical results,” J. Opt. Soc. Am. A 14, 3014–3025 (1997).
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J. Opt. Soc. Am.
, vol.A14
, pp. 3014-3025
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Ren, K.F.1
Grehan, G.2
Gouesbet, G.3
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10
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0009380363
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A localized interpretation to compute all the coefficients gnm in the generalized Lorenz-Mie theory
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G. Gouesbet, G. Grehan, and B. Maheu, “A localized interpretation to compute all the coefficients gnm in the generalized Lorenz-Mie theory,” J. Opt. Soc. Am. A 7, 998–1007 (1990).
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Gouesbet, G.1
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11
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0028515368
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A rigorous justification of the localized approximation to the beam shape coefficients in the generalized Lorenz-Mie theory. 1. On-axis beams
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J. A. Lock and G. Gouesbet, “A rigorous justification of the localized approximation to the beam shape coefficients in the generalized Lorenz-Mie theory. 1. On-axis beams,” J. Opt. Soc. Am. A 11, 2503–2515 (1994).
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J. Opt. Soc. Am.
, vol.A11
, pp. 2503-2515
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Lock, J.A.1
Gouesbet, G.2
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12
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0028515482
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A rigorous justification of the localized approximation to the beam shape coefficients in the generalized Lorenz-Mie theory. II. Off-axis beams
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G. Gouesbet and J. A. Lock, “A rigorous justification of the localized approximation to the beam shape coefficients in the generalized Lorenz-Mie theory. II. Off-axis beams,” J. Opt. Soc. Am. A 11, 2516–2525 (1994).
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J. Opt. Soc. Am.
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Gouesbet, G.1
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17
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0001256380
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Interaction between Gaussian beams and infinite cylinders, by using the theory of distributions
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G. Gouesbet, “Interaction between Gaussian beams and infinite cylinders, by using the theory of distributions,” J. Opt. (Paris) 26, 225–239 (1995).
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J. Opt. (Paris)
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Gouesbet, G.1
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18
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0028479085
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Evaluation of laser sheet beam shape coefficients in generalized Lorenz-Mie theory by using a localized approximation
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K. F. Ren, G. Grehan, and G. Gouesbet, “Evaluation of laser sheet beam shape coefficients in generalized Lorenz-Mie theory by using a localized approximation,” J. Opt. Soc. Am. A 11, 2072–2079 (1994).
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J. Opt. Soc. Am.
, vol.A11
, pp. 2072-2079
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Ren, K.F.1
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19
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84975655826
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Partial wave representation of laser beams for use in light scattering calculations
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G. Gouesbet, J. A. Lock, and G. Grehan, “Partial wave representation of laser beams for use in light scattering calculations,” Appl. Opt. 34, 2133–2143 (1995).
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Appl. Opt.
, vol.34
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Gouesbet, G.1
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20
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0001002474
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Theory of electromagnetic beams
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L. W. Davis, “Theory of electromagnetic beams,” Phys. Rev. A 19, 1177–1179 (1979).
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Davis, L.W.1
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21
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0020104118
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Sur la generalisation de la theorie de Lorenz-Mie
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G. Gouesbet and G. Grehan, “Sur la generalisation de la theorie de Lorenz-Mie,” J. Opt. (Paris) 13, 97–103 (1982).
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Gouesbet, G.1
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23
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0042296117
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Scattering of higher-order Gaussian beams by an infinite cylinder
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G. Gouesbet, “Scattering of higher-order Gaussian beams by an infinite cylinder,” J. Opt. (Paris) 28, 45–65 (1997).
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J. Opt. (Paris)
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Gouesbet, G.1
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24
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0004857980
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Higher-order descriptions of Gaussian beams
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G. Gouesbet, “Higher-order descriptions of Gaussian beams,” J. Opt. (Paris) 27, 35–50 (1996).
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J. Opt. (Paris)
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Gouesbet, G.1
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25
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36549100873
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Fifth-order corrected electromagnetic field components for fundamental Gaussian beam
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J. P. Barton and D. R. Alexander, “Fifth-order corrected electromagnetic field components for fundamental Gaussian beam,” J. Appl. Phys. 66, 2800–2802 (1989).
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Barton, J.P.1
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27
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0000766363
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Discussion of two quadrature methods to evaluate beam shape coefficients in generalized Lorenz-Mie theory
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G. Gouesbet, C. Letellier, K. F. Ren, and G. Grehan, “Discussion of two quadrature methods to evaluate beam shape coefficients in generalized Lorenz-Mie theory,” Appl. Opt. 35, 1537–1542 (1996).
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Gouesbet, G.1
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