Optical forces, helicity, angular momentum and how they are all intertwined
arXiv:2601.23214 · doi:10.1063/5.0255437
Abstract
The theoretical description of optical forces and torques on micron_sized particles is a crucial area of research and has formed the foundation for advancements in optical trapping and manipulation technologies. In this study, we derive analytical expressions for optical forces and torques on micron_sized spherical particles illuminated by focused Laguerre_Gaussian (LG) beams, employing the well_defined helicity multipolar decomposition of electromagnetic fields and Mie theory. We developed a multifunctional program, Multipolar Optical Forces Toolbox, based on this theoretical framework. The program, available on GitHub, was used to generate optical trapping stability maps. These maps predict trap stability across a wide range of system parameters and serve as a practical tool for designing advanced optical trapping experiments. Our analysis reveals the important role of helicity p and orbital angular momentum l on the dynamics of particles trapped off_axis in LG beams and demonstrates the unique nature of the tangential torque. Our findings also highlight notable differences in longitudinal optical forces resulting from pure helicity modifications in Gaussian beams. Furthermore, we showcase the ability of LG beams to isolate Mie resonances, offering a novel approach to locate the spectral positions of the resonances of high multipolar modes. These insights deepen the understanding of helicity in LG optical traps and pave the way for the development of more advanced optical manipulation techniques.
References in corpus (12)
- Conservation of Angular Momentum, Transverse Shift, and Spin Hall Effect in Reflection and Refraction of Electromagnetic Wave Packet
- Strong magnetic response of submicron Silicon particles in the infrared
- Electromagnetic duality symmetry and helicity conservation for the macroscopic Maxwell's equations (previously "Experimental demonstration of electromagnetic duality symmetry breaking")
- Helicity and Angular Momentum. A Symmetry based framework for the study of Light-Matter Interactions
- Excitation of single multipolar modes with engineered cylindrically symmetric fields
- The role of the angular momentum of light in Mie scattering. Excitation of dielectric spheres with Laguerre-Gaussian modes
- Tutorial on the analytical calculation of optical forces on spherical particles in optical tweezers
- Fundamental Limits of Optical Force and Torque
- On-Axis Optical Trapping with Vortex Beams: The Role of the Multipolar Decomposition
- Unveiling dipolar spectral regimes of large dielectric Mie spheres from helicity conservation
- The role of angular momentum in the construction of electromagnetic multipolar fields
- Characterizing the Backscattered Spectrum of Mie Spheres