We present a novel fundamental phenomenon occurring when a polarized beam of light is observed from a reference frame tilted with respect to the direction of propagation of the beam. This effect has a purely geometric nature and amounts to a polarization-dependent shift or split of the beam intensity distribution evaluated as the time-averaged flux of the Poynting vector across the plane of observation. We demonstrate that such a shift is unavoidable whenever the beam possesses a nonzero transverse angular momentum. This latter result has general validity and applies to arbitrary systems such as, e.g., electronic and atomic beams
<p>We analytically derive an expression for the optical field describing the spin Hall effect of a p...
We investigate the spin angular momentum (SAM) of double-index cylindrical vector beams in tight foc...
Polarized light is a phenomenon familiar to anyone with a pair of polaroid sunglasses. Optical compo...
We present a novel fundamental phenomenon occurring when a polarized beam of light is observed from ...
Recently, it was shown that a nonzero transverse angular momentum manifests itself in a polarization...
The geometric Spin Hall Effect of Light (geometric SHEL) amounts to a polarization-dependent positio...
We demonstrate the geometric spin Hall effect of light by focusing a specially polarization tailored...
The spin Hall effect of light (SHEL) is the photonic analogue of the spin Hall effect occurring for ...
The spin Hall effect of light (SHEL), which refers to a spin-dependent and transverse splitting of r...
We describe the spin-Hall effect of light (as well as the angular Goos-Hänchen effect) at a tilted l...
© 2022 Wiley-VCH GmbHThe spin Hall effect of light (SHEL), a spin-dependent transverse splitting of ...
This thesis describes the journey from the theoretical idea to an experimental proof of a novel opt...
We consider propagation of a paraxial beam carrying the spin angular momentum (polarization) and int...
International audienceWe show that optical beams propagating in transversally disordered materials e...
We review basic physics and novel types of optical angular momentum. We start with a theoretical ove...
<p>We analytically derive an expression for the optical field describing the spin Hall effect of a p...
We investigate the spin angular momentum (SAM) of double-index cylindrical vector beams in tight foc...
Polarized light is a phenomenon familiar to anyone with a pair of polaroid sunglasses. Optical compo...
We present a novel fundamental phenomenon occurring when a polarized beam of light is observed from ...
Recently, it was shown that a nonzero transverse angular momentum manifests itself in a polarization...
The geometric Spin Hall Effect of Light (geometric SHEL) amounts to a polarization-dependent positio...
We demonstrate the geometric spin Hall effect of light by focusing a specially polarization tailored...
The spin Hall effect of light (SHEL) is the photonic analogue of the spin Hall effect occurring for ...
The spin Hall effect of light (SHEL), which refers to a spin-dependent and transverse splitting of r...
We describe the spin-Hall effect of light (as well as the angular Goos-Hänchen effect) at a tilted l...
© 2022 Wiley-VCH GmbHThe spin Hall effect of light (SHEL), a spin-dependent transverse splitting of ...
This thesis describes the journey from the theoretical idea to an experimental proof of a novel opt...
We consider propagation of a paraxial beam carrying the spin angular momentum (polarization) and int...
International audienceWe show that optical beams propagating in transversally disordered materials e...
We review basic physics and novel types of optical angular momentum. We start with a theoretical ove...
<p>We analytically derive an expression for the optical field describing the spin Hall effect of a p...
We investigate the spin angular momentum (SAM) of double-index cylindrical vector beams in tight foc...
Polarized light is a phenomenon familiar to anyone with a pair of polaroid sunglasses. Optical compo...