Knowing, and controlling, the spatial polarization distribution of a beam is of importance in applications such as optical tweezing, imaging, material processing and communications. Here we show how the polarization distribution is affected by both linear and nonlinear (self-focussing) propagation. We derive an analytical ex- pression for the polarization rotation of fully-structured light (FSL) beams during linear propagation and show that the observed rotation is due entirely to the difference in Gouy phase between the two eigenmodes comprising the FSL beams, in excellent agreement with numerical simulations. We also explore the effect of cross-phase modulation due to self-focusing (Kerr) nonlinearity and show that polarization rotation c...
Linear polarizers are commonly used for projecting the direction of the electric field of a transver...
Since its introduction by Berry in 1984, the geometric phase has become of fundamental importance in...
We describe how the propagation of light through uniaxial crystals can be used as a versatile tool ...
We study the nonlinear optical propagation of two different classes of{light beams with space varyin...
We study the nonlinear optical propagation of two different classes of light beams with space-varyin...
The robustness of the polarization spatial distribution of vector beams upon propagation is crucial...
The interplay of diffraction and self-focussing nonlinearity in an optical cavity results in the for...
We provide a theoretical investigation of optical Poincar\'e beams that exhibit interwinding chiral ...
Wherever the polarization properties of a light beam are of concern, polarizers and polarizing beams...
We experimentally study polarization dynamics of Kerr beam self-cleaning in a graded-index multimode...
Light is widely used in areas such as optical communications, micro/nano fabrication, industrial pro...
We experimentally study the polarization dynamics of Kerr beam self-cleaning in a multimode fiber. W...
A nonlinear self-focusing material can amplify random small-amplitude phase modulations present in a...
We describe the self-organization of light state-of-polarization in optical fiber based on a nonline...
In this communication we analyze the light field distribution of a highly focused radially polarized...
Linear polarizers are commonly used for projecting the direction of the electric field of a transver...
Since its introduction by Berry in 1984, the geometric phase has become of fundamental importance in...
We describe how the propagation of light through uniaxial crystals can be used as a versatile tool ...
We study the nonlinear optical propagation of two different classes of{light beams with space varyin...
We study the nonlinear optical propagation of two different classes of light beams with space-varyin...
The robustness of the polarization spatial distribution of vector beams upon propagation is crucial...
The interplay of diffraction and self-focussing nonlinearity in an optical cavity results in the for...
We provide a theoretical investigation of optical Poincar\'e beams that exhibit interwinding chiral ...
Wherever the polarization properties of a light beam are of concern, polarizers and polarizing beams...
We experimentally study polarization dynamics of Kerr beam self-cleaning in a graded-index multimode...
Light is widely used in areas such as optical communications, micro/nano fabrication, industrial pro...
We experimentally study the polarization dynamics of Kerr beam self-cleaning in a multimode fiber. W...
A nonlinear self-focusing material can amplify random small-amplitude phase modulations present in a...
We describe the self-organization of light state-of-polarization in optical fiber based on a nonline...
In this communication we analyze the light field distribution of a highly focused radially polarized...
Linear polarizers are commonly used for projecting the direction of the electric field of a transver...
Since its introduction by Berry in 1984, the geometric phase has become of fundamental importance in...
We describe how the propagation of light through uniaxial crystals can be used as a versatile tool ...