Author:
Jang Seong-Woo,Choi Wonwoo,Kim Soobin,Lee Jonghyun,Na Sehwan,Ham Sangwon,Park Juseong,Kang Hoon,Ju Byeong-Kwon,Kim Hwi
Abstract
AbstractComplex spatial light modulator (SLM), which can simultaneously control the amplitude and phase of light waves, is a key technology for wide-range of wave-optic technologies including holographic three-dimensional displays. This paper presents a flat panel complex spatial light modulator that consists of dual in-plane switching liquid crystal panels with double-degrees of freedom of voltage inputs. The proposed architecture features single-pixel level complex light modulation enabling complex light modulation in entire free space, which is most contrast to conventional macro-pixel based complex modulation techniques. Its complex light modulation capability is verified with theoretical simulation and experimental characterization, and a three-dimensional holographic image reconstruction without conjugate noise. It is believed that the proposed flat panel complex SLM can be an essential device for a wide range of advanced wave optic technologies.
Funder
LG Display Co.
Samsung Research Funding & Incubation Center of Samsung Electronics
Publisher
Springer Science and Business Media LLC
Reference47 articles.
1. Mok, F., Diep, J., Liu, H. K. & Psaltis, D. Real-time computer-generated hologram by means of liquid-crystal television spatial light-modulator. Opt. Lett. 11, 748–750 (1986).
2. Neto, L. G., Roberge, D. & Sheng, Y. L. Full-range, continuous, complex modulation by the use of two coupled-mode liquid-crystal televisions. Appl. Opt. 35, 4567–4576 (1996).
3. Grilli, S. et al. Whole optical wavefields reconstruction by digital holography. Opt. Express 9, 294–302 (2001).
4. Takaki, Y. & Okada, N. Hologram generation by horizontal scanning of a high-speed spatial light modulator. Appl. Opt. 48, 3255–3260 (2009).
5. Sasaki, H. et al. Large size three-dimensional video by electronic holography using multiple spatial light modulators. Sci. Rep. UK 4, 66 (2014).
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