DocumentCode
14479
Title
Cylindrical Liquid Crystal Microlens Array With Rotary Optical Power and Tunable Focal Length
Author
Algorri, Jose Francisco ; Urruchi, Virginia ; Bennis, Noureddine ; Sanchez-Pena, Jose Manuel ; Oton, Jose Manuel
Author_Institution
Dept. of Electron. Technol., Carlos III Univ. of Madrid, Leganés, Spain
Volume
36
Issue
6
fYear
2015
fDate
Jun-15
Firstpage
582
Lastpage
584
Abstract
A novel cylindrical liquid crystal microlens array with rotary power and tunable capability is proposed and experimentally demonstrated. This structure is capable of generating tunable cylindrical microlenses in two different axis by low voltage control. For this, complex electrical signals are required (electrical phase shift of 180°). A control over the maximum phase shift from 4π to 34π radians has been demonstrated. This effect modifies the effective focal length (from 0.2 to 1.2 mm). Moreover, an OFF-state is also possible (behaving like a transparent medium). The structure is simple and does not require a complex fabrication process. The proposed device has several advantages over the existing microlens arrays and is simple and low cost. The device could contribute to developing new applications and to reducing the fabrication costs of current devices. For example, this device can be used in the next generation of mobile displays with autostereoscopic capability.
Keywords
liquid crystal displays; microlenses; optical phase shifters; self-induced transparency; complex electrical signals; cylindrical liquid crystal microlens array; electrical phase shift; rotary optical power; transparent medium; tunable focal length; voltage control; Arrays; Electrodes; Lenses; Liquid crystal displays; Microoptics; Optimized production technology; Three-dimensional displays; Liquid-crystal devices; Micro-optical devices; liquid-crystal devices;
fLanguage
English
Journal_Title
Electron Device Letters, IEEE
Publisher
ieee
ISSN
0741-3106
Type
jour
DOI
10.1109/LED.2015.2419511
Filename
7079471
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