We analyze the ponderomotive action experienced by a small spherical particle immersed in an optical field, in relation to the internal energy flows (optical currents) and their spin and orbital constituents. The problem is studied analytically, based on the dipole model, and numerically. Three sources of the field mechanical action - energy density gradient and the orbital and spin parts of the energy flow - differ by the ponderomotive mechanism, and their physical nature manifests itself in the optical force dependence on the particle radius a. If a is much less than the radiation wavelength, the optical force behaves as a^n and integer n can be used to classify the sources of the mechanical action. This classification correlates with the...
The manipulation of matter with electromagnetic radiation is a capacity that has been known for over...
The manipulation of matter with electromagnetic radiation is a capacity that has been known for over...
Multi-dimensional potential energy surfaces are associated with optical binding. A detailed explorat...
Radiation of electromagnetic energy by electric or magnetic multipole sources can be modified by the...
An ensemble of spherical particles with arbitrary dielectric permittivity and magnetic penneability ...
The term 'optical binding' conveniently encapsulates a variety of phenomena whereby light can exert ...
We review optical phenomena associated with the internal energy redistribution which accompany propa...
The term 'optical binding' conveniently encapsulates a variety of phenomena whereby light can exert ...
Light forces on small (Rayleigh) particles are usually described as the sum of two terms: the dipola...
We present numerical simulations of light emitted by a source and scattered by surrounding electric ...
We investigate the decomposition of the electromagnetic Poynting momentum density in three-dimension...
We examine the momentum and angular momentum (AM) properties of monochromatic optical fields in disp...
Aside from energy, light carries linear and angular momenta that can be transferred to matter. The i...
Light carries both spin and orbital angular momentum. These dynamical properties are determined by t...
We examine the momentum, spin, and orbital angular momentum of structured monochromatic optical fiel...
The manipulation of matter with electromagnetic radiation is a capacity that has been known for over...
The manipulation of matter with electromagnetic radiation is a capacity that has been known for over...
Multi-dimensional potential energy surfaces are associated with optical binding. A detailed explorat...
Radiation of electromagnetic energy by electric or magnetic multipole sources can be modified by the...
An ensemble of spherical particles with arbitrary dielectric permittivity and magnetic penneability ...
The term 'optical binding' conveniently encapsulates a variety of phenomena whereby light can exert ...
We review optical phenomena associated with the internal energy redistribution which accompany propa...
The term 'optical binding' conveniently encapsulates a variety of phenomena whereby light can exert ...
Light forces on small (Rayleigh) particles are usually described as the sum of two terms: the dipola...
We present numerical simulations of light emitted by a source and scattered by surrounding electric ...
We investigate the decomposition of the electromagnetic Poynting momentum density in three-dimension...
We examine the momentum and angular momentum (AM) properties of monochromatic optical fields in disp...
Aside from energy, light carries linear and angular momenta that can be transferred to matter. The i...
Light carries both spin and orbital angular momentum. These dynamical properties are determined by t...
We examine the momentum, spin, and orbital angular momentum of structured monochromatic optical fiel...
The manipulation of matter with electromagnetic radiation is a capacity that has been known for over...
The manipulation of matter with electromagnetic radiation is a capacity that has been known for over...
Multi-dimensional potential energy surfaces are associated with optical binding. A detailed explorat...