Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 5 de 5
Filter
Add more filters










Database
Language
Publication year range
1.
Opt Express ; 20(13): 14621-31, 2012 Jun 18.
Article in English | MEDLINE | ID: mdl-22714524

ABSTRACT

Noncollinear second harmonic generation from a Bacteriorhodopsin (BR) oriented multilayer film was systematically investigated by varying the polarization state of both fundamental beams. Both experimental results and theoretical simulations, show that the resulting polarization mapping is an useful tool to put in evidence the optical chirality of the investigated film as well as the corresponding multipolar contributions to the nonlinear.


Subject(s)
Bacteriorhodopsins/chemistry , Bacteriorhodopsins/ultrastructure , Membranes, Artificial , Models, Biological , Models, Chemical , Computer Simulation , Light , Nonlinear Dynamics , Refractometry , Scattering, Radiation
2.
Opt Express ; 17(22): 19337-44, 2009 Oct 26.
Article in English | MEDLINE | ID: mdl-19997154

ABSTRACT

We present a scheme of XOR/XNOR logic gate, based on non phase-matched noncollinear second harmonic generation from a medium of suitable crystalline symmetry, Gallium nitride. The polarization of the noncollinear generated beam is a function of the polarization of both pump beams, thus we experimentally investigated all possible polarization combinations, evidencing that only some of them are allowed and that the nonlinear interaction of optical signals behaves as a polarization based XOR. The experimental results show the peculiarity of the nonlinear optical response associated with noncollinear excitation, and are explained using the expression for the effective second order optical nonlinearity in noncollinear scheme.


Subject(s)
Gallium/chemistry , Nanostructures/chemistry , Nanostructures/ultrastructure , Nanotechnology/instrumentation , Optical Devices , Refractometry/instrumentation , Signal Processing, Computer-Assisted/instrumentation , Equipment Design , Equipment Failure Analysis , Nonlinear Dynamics
3.
Opt Lett ; 34(14): 2189-91, 2009 Jul 15.
Article in English | MEDLINE | ID: mdl-19823544

ABSTRACT

We present a method, based on noncollinear second-harmonic generation, to evaluate the nonzero elements of the nonlinear optical susceptibility. At a fixed incidence angle, the generated signal is investigated by varying the polarization state of both fundamental beams. The resulting polarization charts allows us to verify if Kleinman's symmetry rules can be applied to a given material or to retrieve the absolute value of the nonlinear optical tensor terms, from a reference measurement. Experimental measurements obtained from gallium nitride layers are reported. The proposed method does not require an angular scan and thus is useful when the generated signal is strongly affected by sample rotation.

4.
Opt Express ; 17(19): 17000-9, 2009 Sep 14.
Article in English | MEDLINE | ID: mdl-19770918

ABSTRACT

We analyze the relationship between the bound and the free waves in the noncollinear SHG scheme, along with the vectorial conservation law for the different components arising when there are two pump beams impinging on the sample with two different incidence angles. The generated power is systematically investigated, by varying the polarization state of both fundamental beams, while absorption is included via the Herman and Hayden correction terms. The theoretical simulations, obtained for samples which are some coherence length thick show that the resulting polarization mapping is an useful tool to put in evidence the interference between bound and free waves, as well as the effect of absorption on the interference pattern.

5.
Phys Rev Lett ; 92(6): 060404, 2004 Feb 13.
Article in English | MEDLINE | ID: mdl-14995222

ABSTRACT

We implemented the experiment proposed by Cabello in the preceding Letter to test the bounds of quantum correlation. As expected from the theory we found that, for certain choices of local observables, Tsirelson's bound of the Clauser-Horne-Shimony-Holt inequality (2 x square root of 2) is not reached by any quantum states.

SELECTION OF CITATIONS
SEARCH DETAIL
...