529 results on '"Gouesbet, Gérard"'
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2. The Localized Approximation and Localized Beam Models
3. Special Cases of Axisymmetric and Gaussian Beams
4. Applications, and Miscellaneous Issues
5. Gaussian Beams and Other Beams
6. Finite Series
7. Resolution of Special Maxwell’s Equations
8. Background in Maxwell’s Electromagnetism and Maxwell’s Equations
9. Dark and superdark theorems with applications to helical beams (beams with a topological charge) which are not vortex beams
10. Finite series approach for the calculation of beam shape coefficients in ultrasonic and other acoustic scattering
11. T-matrix methods for electromagnetic structured beams: A commented reference database for the period 2019–2023
12. Symmetries of circularly axisymmetric beams expressed in terms of beam shape coefficients
13. Professor James Albert Lock (1948–2023): A life of honor and work of excellence
14. On evanescent waves and blowing-ups of the finite series technique in spherical wave expansion of shaped beams
15. An approach for a polychromatic generalized Lorenz–Mie theory
16. Blowing-ups of beam shape coefficients of Gaussian beams using finite series in generalized Lorenz–Mie theory
17. A framework for the finite series method of the generalized Lorenz-Mie theory and its application to freely-propagating Laguerre-Gaussian beams
18. Optical forces and optical force partitions exerted on arbitrary sized spherical particles in the framework of generalized Lorenz–Mie theory
19. Ince–Gaussian beams in the generalized Lorenz–Mie theory through finite series Laguerre–Gaussian beam shape coefficients
20. Contributors
21. Optical force categorizations in the generalized Lorenz-Mie theory
22. Conclusion
23. On a class of definite integrals with products of (Ricatti-)Bessel functions and their derivatives
24. Optical forces and optical force categorizations exerted on quadrupoles in the framework of generalized Lorenz–Mie theory
25. On analytical solutions to classes of definite integrals with products of Bessel functions of the first kind and their derivatives
26. Diverging and converging schemes of approximations to describe fundamental EM Gaussian beams beyond the paraxial approximation
27. Towards photophoresis with the generalized Lorenz-Mie theory
28. Interactions between arbitrary electromagnetic shaped beams and circular and elliptical infinite cylinders: A review
29. Angular spectrum representation of the Bessel-Gauss beam and its approximation: A comparison with the localized approximation
30. The generalized Lorenz-Mie theory and its identification with the dipole theory of forces for particles with electric and magnetic properties
31. Optical forces and optical force categorizations on small magnetodielectric particles in the framework of generalized Lorenz-Mie theory
32. Efficient computation of arbitrary beam scattering on a sphere: Comments and rebuttal, with a review on the angular spectrum decomposition
33. Rayleigh limit of generalized Lorenz-Mie theory for on-axis beams and its relationship with the dipole theory of forces. Part II: Non-dark axisymmetric beams of the second kind and dark axisymmetric beams, including a review
34. Poynting vector and beam shape coefficients: On new families of symmetries (non-dark axisymmetric beams of the second kind and dark axisymmetric beams)
35. Laser-light and interactions with particles (LIP), 2022
36. On Evanescent Waves and Blowing-ups of the Finite Series Technique in Spherical Wave Expansion of Shaped Beams
37. On the Rayleigh limit of the generalized Lorenz-Mie theory and its formal identification with the dipole theory of forces. II. The transverse case.
38. Rayleigh limit of generalized Lorenz-Mie theory for on-axis beams and its relationship with the dipole theory of forces. Part I: Non dark axisymmetric beams of the first kind, with the example of Gaussian beams
39. On the Rayleigh limit of the generalized Lorenz–Mie theory and its formal identification with the dipole theory of forces. I. The longitudinal case
40. On transverse radiation pressure cross-sections in the generalized Lorenz–Mie theory and their numerical relationship with the dipole theory of forces
41. Finite series algorithm design for lens-focused Laguerre–Gauss beams in the generalized Lorenz–Mie theory
42. Optical forces exerted by on-axis Bessel beams on Rayleigh particles in the framework of generalized Lorenz-Mie theory
43. Nonlinear Generalized Schrödinger’s Equations by Lifting Hamilton-Jacobi’s Formulation of Classical Mechanics
44. Axicon optical forces and other kinds of transverse optical forces exerted by off-axis Bessel beams in the Rayleigh regime in the framework of generalized Lorenz-Mie theory
45. Axicon terms associated with gradient optical forces in generalized Lorenz-Mie theory
46. Bessel-Gauss beams in the generalized Lorenz-Mie theory using three remodeling techniques
47. Van de Hulst Essay: A review on generalized Lorenz-Mie theories with wow stories and an epistemological discussion
48. Description of acoustical Gaussian beams from the electromagnetic Davis scheme of approximations and the on-axis localized approximation.
49. Modified finite series technique for the evaluation of beam shape coefficients in the T-matrix methods for structured beams with application to Bessel beams
50. Gradient, scattering and other kinds of longitudinal optical forces exerted by off-axis Bessel beams in the Rayleigh regime in the framework of generalized Lorenz-Mie theory
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