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Massimo Santarsiero

Publications and source records attributed to Massimo Santarsiero.

4 recordsLinked to original sources

Design and characterization of a simple polarization grating-based polarimeter

In undergraduate optics courses, diffraction gratings are studied extensively, generally within the scalar approximation. When the vector nature of light is taken into account, so-called polarization diffraction gratings have been proposed, which are a cutting-edge research topic due to their numerous applications. This paper proposes a simple experiment to introduce students to polarization diffraction gratings and, at the same time, use this device to apply many of the concepts learned about polarimetry. Although current research uses spatial light modulators and metasurfaces, we use a cheap commercial polarization grating. In addition to show how a polarization grating can be characterized, its use as a cheap and easy-to-use Stokes polarimeter is described and demonstrated experimentally. In performing the experiment, issues typical of inverting linear systems will arise, and this will also provide the opportunity to address the problem of finding well-conditioned systems of equations.

physics.optics

Beams with propagation-invariant transverse polarization pattern

A wide class of nonuniformly totally polarized beams is introduced that preserve their transverse polarization pattern during paraxial propagation. They are obtained as suitable combinations of Gaussian modes and find applications in polarimetric techniques that use a single input beam for the determination of the Mueller matrix of a homogeneous sample. The class also includes beams that present all possible polarization states across their transverse section (Full-Poincarè beams). An example of such beams and its use in polarimetry is discussed in detail. The requirement of invariance of the polarization pattern can be limited to the propagation in the far field, in which case less restrictive conditions are found and a wider class of beams is obtained.

physics.optics

Non-quantum entanglement and a complete characterization of pre-Mueller and Mueller matrices in polarization optics

The Mueller-Stokes formalism which governs conventional polarization optics is formulated for plane waves, and thus the only qualification one could demand of a $4\times 4$ real matrix $M$ in order that it qualifies to be the Mueller matrix of some physical system is that $M$ should map $Ω^{({\rm pol})}$, the positive cone of Stokes vectors, into itself. In view of growing current interest in the characterization of partially coherent partially polarized electromagnetic beams, there is need to extend this formalism to such beams wherein the polarization and spatial dependence are generically inseparably intertwined. This inseparability or non-quantum entanglement brings in additional constraints that a pre-Mueller matrix $M$ mapping $Ω^{({\rm pol})}$ into itself needs to meet in order that it is an acceptable physical Mueller matrix. These additional constraints are motivated and fully characterized.

quant-ph

Non-quantum entanglement resolves a fundamental issue in Polarization optics

The issue raised in this paper is classical in the sense of being ancient: which subset of 4X4 matrices should be accepted as physical Mueller matrices in polarization optics? Non-quantum entanglement between the polarization and spatial degrees of freedom of an electromagnetic beam is shown to provide the physical basis to resolve this issue in a definitive manner.

quant-ph