Effect of light polarization on the diffraction pattern of small wires

1985 ◽  
Vol 53 (8) ◽  
pp. 783-786 ◽  
Author(s):  
T. J. Racey ◽  
P. Rochon ◽  
N. Gauthier
2011 ◽  
Vol 378-379 ◽  
pp. 565-568
Author(s):  
Wan Maisarah Mukhtar ◽  
P. Susthitha Menon ◽  
Sahbudin Shaari

Fraunhofer diffraction pattern from a circular aperture with the diameter of 10µm was observed using an optical fiber microprobe. The optical fiber microprobe started to detect optical power when the distance between the probe and the circular aperture was more than 292µm. When the probe was moved in a lateral motion, the light propagation showed a Bessel function profile. When the optical fiber microprobe was moved from 293µm to 309µm from the centre of the circular aperture in a transverse motion, the power detected was not consistent with a continuation of maxima and minima due to the effect of light propagation from the circular aperture. We also observed that the distance between the probe and the centre of the circular aperture was directly proportional with the radius of focused spot and inversely proportional with the Fresnel number.


2011 ◽  
Vol 60 (6) ◽  
pp. 064209
Author(s):  
Zhang Er-Feng ◽  
Dai Hong-Yi

1990 ◽  
Vol 169 (3) ◽  
pp. 209-212 ◽  
Author(s):  
Jun Yoshinobu ◽  
Xingcai Guo ◽  
John T. Yates

Open Physics ◽  
2011 ◽  
Vol 9 (2) ◽  
Author(s):  
Andris Ozols ◽  
Valdis Kokars ◽  
Peteris Augustovs ◽  
Ilze Uiska ◽  
Kaspars Traskovskis ◽  
...  

AbstractLight polarization effects on a holographic grating recording in a glassy chalcogenide a-As40S15Se45 film has been experimentally studied and compared with previously studied glassy molecular azobenzene film 8a at 633, using s − s,p − p, CE-1 and CE-2 circular-elliptic recording-beam polarizations (differing by light electric field rotation directions). The azocompound exhibited much higher self-diffraction efficiency (SDE) and diffraction efficiency whereas chalcogenide was more sensitive. Their recording efficiency polarization dependences also were different. SDE up to 45% was achieved in 8a with p − p and up to 2.6% in a-As40S15Se45 with CE-2 polarized recording beams. The polarization changes in the diffraction process were studied as well in these and other materials (11, 16, 19 and a-As2S3 film, LiTaO3:Fe crystal). It was found that light polarization changes in the process of diffraction from gratings recorded vectorially by s−p polarizations depended on chemical composition, wavelength, and exposure time. Vector gratings with SDE up to 25% were recorded in 8a, rotating a linear polarization by 90°. No light polarization changes were found in azobenzene 19 and chalcogenide films and in LiTaO3:Fe crystal, thus showing a vector recording of scalar holograms. The recording mechanisms in azocompounds and chalcogenides are discussed and compared.


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