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Applied Optics|June 20, 1997
Interaction between an infinite cylinder and an arbitrary-shaped beamG GouesbetApplied Optics|November 19, 2010
Partial-wave expansions and properties of axisymmetric light beamsG GouesbetApplied Optics|March 11, 2010
Mie theory calculations: new progress, with emphasis on particle sizingG Grehan, G GouesbetApplied Optics|November 10, 2010
Electromagnetic scattering from a multilayered sphere located in an arbitrary beamF Onofri, G Gréhan, G GouesbetApplied Optics|February 15, 2008
Improved standard beams with application to reverse radiation pressureH Polaert, G Gréhan, G GouesbetApplied Optics|February 21, 2008
Measurement of beam-shape coefficients in the generalized lorenz-mie theory for the on-axis caseH Polaert, G Gouesbet, G GréhanApplied Optics|March 24, 2010
Monotonic relationships between scattered powers and diameters in Lorenz-Mie theory for simultaneous velocimetry and sizing of single particlesG Grehan, G Gouesbet, C RabasseApplied Optics|August 21, 2010
Optical levitation experiments to assess the validity of the generalized Lorenz-Mie theoryF Guilloteau, G Gréhan, G GouesbetApplied Optics|June 12, 2010
Computations of the g(n) coefficients in the generalized Lorenz-Mie theory using three different methodsG Gouesbet, G Grehan, B MaheuApplied Optics|March 22, 2008
Laboratory determination of beam-shape coefficients for use in generalized lorenz-mie theoryH Polaert, G Gouesbet, G GréhanPageof 5