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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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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. 19, 59–67 (1988).
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(1988)
J. Opt.
, vol.19
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Maheu, B.1
Gouesbet, G.2
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3
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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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(1994)
Part. Part. Syst. Charact.
, vol.11
, pp. 22-34
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Gouesbet, G.1
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4
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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
Gouesbet, G.3
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5
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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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(1995)
J. Opt. (Paris)
, vol.26
, pp. 225-239
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Gouesbet, G.1
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6
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0029388453
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Scattering of a first-order Gaussian beam by an infinite cylinder with arbitrary location and arbitrary orientation
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G. Gouesbet, “Scattering of a first-order Gaussian beam by an infinite cylinder with arbitrary location and arbitrary orientation,” Part. Part. Syst. Char. 12, 242–256 (1995).
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(1995)
Part. Part. Syst. Char.
, vol.12
, pp. 242-256
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Gouesbet, G.1
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7
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85010171593
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Interaction between an infinite cylinder and arbitrary-shaped beams
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G. Gouesbet, “Interaction between an infinite cylinder and arbitrary-shaped beams,” submitted to Appl. Opt.
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Submitted to Appl. Opt
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Gouesbet, G.1
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8
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0001002474
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Theory of electromagnetic beams
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Davis, L.W.1
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0004292638
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J. F. Rice, The Approximation of Functions (AddisonWesley, Reading Mass., 1964, Vol. 1; 1969, Vol. 2).
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The Approximation of Functions
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Rice, J.F.1
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11
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0030103251
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Partial wave expansions and properties of axisymmetric light beams
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G. Gouesbet, “Partial wave expansions and properties of axisymmetric light beams,” Appl. Opt. 35, 1543–1555 (1996).
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Appl. Opt.
, vol.35
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Gouesbet, G.1
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12
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0020104118
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Sur la généralisation de la theorie de Lorenz-Mie
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G. Gouesbet and G. Grehan, “Sur la généralisation de la theorie de Lorenz-Mie,” J. Opt. 13, 97–103 (1982).
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Gouesbet, G.1
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13
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0022026612
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Scattering of a Gaussian beam by a Mie scatter center, using a Bromwich formulation
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G. Gouesbet, G. Grehan, and B. Maheu, “Scattering of a Gaussian beam by a Mie scatter center, using a Bromwich formulation,” J. Opt. (Paris) 16, 83–93 (1985).
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, vol.16
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Gouesbet, G.1
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14
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0004339080
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SPIE, Bellingham, Wash
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M. Kerker, ed., SPIE Milestone Series (SPIE, Bellingham, Wash., 1988), Vol. 951, Part 1, pp. 361–371.
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(1988)
SPIE Milestone Series
, vol.951
, pp. 361-371
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Kerker, M.1
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15
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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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(1996)
Appl. Opt.
, vol.35
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Gouesbet, G.1
Letellier, C.2
Ren, K.F.3
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16
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36149032173
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Expressions to compute the coefficients (Formula presented) in the generalized Lorenz-Mie theory, using finite series
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G. Gouesbet, G. Grehan, and B. Maheu, “Expressions to compute the coefficients (Formula presented) in the generalized Lorenz-Mie theory, using finite series,” J. Opt. (Paris) 19, 35–48 (1988).
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J. Opt. (Paris)
, vol.19
, pp. 35-48
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Gouesbet, G.1
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Maheu, B.3
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17
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0000699886
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Scattering of laser beams by Mie scatter centers
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G. Grehan, B. Maheu, and G. Gouesbet, “Scattering of laser beams by Mie scatter centers: numerical results using alocalized approximation,” Appl. Opt. 25, 3539–3548 (1986).
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(1986)
Appl. Opt
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Grehan, G.1
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18
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84975606862
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Computations of the coefficients gn in the generalized Lorenz -Mie theory using three difference methods
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n in the generalized Lorenz -Mie theory using three difference methods,” Appl. Opt. 27, 4874–4883 (1998).
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Appl. Opt.
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Gouesbet, G.1
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19
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0009380363
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A localized interpretation to compute all the coefficients (Formula presented) 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 (Formula presented) 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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20
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36549100873
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Fifth order corrected electromagnetic field components for fundamental Gaussian beams
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J. P. Barton and D. R. Alexander, “Fifth order corrected electromagnetic field components for fundamental Gaussian beams,” J. Appl. Phys. 66, 2800–2802 (1989).
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21
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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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J. Opt. Soc. Am.
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Lock, J.A.1
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22
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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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23
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84975655826
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Partial wave representations of laser beams for use in light-scattering calculations
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G. Gouesbet, J. A. Lock, and G. Grehan, “Partial wave representations of laser beams for use in light-scattering calculations,” Appl. Opt. 34, 2133–2143 (1995).
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Appl. Opt.
, vol.34
, pp. 2133-2143
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Gouesbet, G.1
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25
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0028370284
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Trajec-tory ambiguities in phase-Doppler systems: Study of a near-forward and a near-backward geometry
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Char. 11
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G. Grehan, G. Gouesbet, A. Naqwi, and F. Durst, “Trajec-tory ambiguities in phase-Doppler systems: study of a near-forward and a near-backward geometry,” Part. Part. Syst. Char. 11, 133–145 (1994).
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Part. Part. Syst.
, pp. 133-145
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Grehan, G.1
Gouesbet, G.2
Naqwi, A.3
Durst, F.4
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26
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0028447674
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Radiation pressure forces exerted on a particle arbitrarily located in a Gaussian beam by using the generalized Lorenz-Mie theory, and associated resonance effects
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K. F. Ren, G. Gréhan, and G. Gouesbet, “Radiation pressure forces exerted on a particle arbitrarily located in a Gaussian beam by using the generalized Lorenz-Mie theory, and associated resonance effects,” Opt. Commun. 108, 343–354 (1994).
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Opt. Commun.
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Ren, K.F.1
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27
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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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(1996)
J. Opt. (Paris)
, vol.27
, pp. 35-50
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Gouesbet, G.1
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28
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0022128643
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The order of approximation in a theory of the scattering of a Gaussian beam by a Mie scatter center
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G. Gouesbet, B. Maheu, and G. Gréhan, “The order of approximation in a theory of the scattering of a Gaussian beam by a Mie scatter center,” J. Opt. 16, 239–247 (1985).
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J. Opt.
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Gouesbet, G.1
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29
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0004339080
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SPIE, Bellingham, Wash
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M. Kerker, ed., SPIE Milestone Series (SPIE, Bellingham, Wash., 1988), Vol. 951, Part 1, pp. 352–360.
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(1988)
SPIE Milestone Series
, vol.951
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Kerker, M.1
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32
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0037675098
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Electromagnetic field expression of a laser sheet and the order of approximation
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K. F. Ren, G. Gréhan, and G. Gouesbet, “Electromagnetic field expression of a laser sheet and the order of approximation,” J. Opt. (Paris) 25, 165–176 (1994).
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(1994)
J. Opt. (Paris)
, vol.25
, pp. 165-176
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Ren, K.F.1
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33
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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. Gréhan, 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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(1994)
J. Opt. Soc. Am.
, vol.A11
, pp. 2072-2079
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Ren, K.F.1
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Gouesbet, G.3
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