• 제목/요약/키워드: Liquid crystal-spatial light modulators

검색결과 11건 처리시간 0.028초

Review of Liquid Crystal Spatial Light Modulators at Thales Research & Technology;Technology and Applications

  • Lee, Mane-Si Laure;Loiseaux, Brigitte;Dolfi, Daniel;Tonda, Sylvie;Huignard, Jean-Pierre
    • Journal of Information Display
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    • 제3권3호
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    • pp.24-29
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    • 2002
  • Liquid Crystal Spatial Light Modulators (LC-SLMs) provide many interesting applications in laser optics and opto-el ectronic systems, in addition to displays. Among them, three topics developed at Thales Research & Technology are reviewed: wavefront correction for laser beam control, microwave processing in radar systems and holography for TN-LCDs viewing angle compensation.

Review of Liquid Crystal Spatial Light Modulators at Thales Research & Technology;technology and applications

  • Lee, Mane-Si Laure;Loiseaux, Brigitte;Dolfi, Daniel;Tonda, Sylvie;Huignard, Jean-Pierre
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2002년도 International Meeting on Information Display
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    • pp.943-946
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    • 2002
  • Liquid Crystal Spatial Light Modulators (LC-SLMs) provide many interesting applications in laser optics and opto-electronic systems, in addition to displays. Among them, three topics developed at Thales Research & Technology are reviewed: wavefront correction for laser beam control, microwave processing in radar systems and holography for TN-LCDs viewing angle compensation.

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Liquid Crystal Spatial Light Phase Modulator and its Applications

  • Hara, Tsutomu
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2002년도 International Meeting on Information Display
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    • pp.939-942
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    • 2002
  • The optically addressed and electrically addressed spatial phase only light modulators without pixelized structures have been developed. A sufficient phase modulation capability and a high diffraction efficiency of these devices are useful for practical applications.

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Binary-phase Complex Spatial Light Modulators Driven by Mirror Symmetry

  • Choi, Minho;Choi, Jaewu
    • Current Optics and Photonics
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    • 제5권3호
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    • pp.261-269
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    • 2021
  • Binary-phase complex spatial light modulators (BP-C-SLMs) are proposed and simulated. This study shows that bottom-top mirror-symmetrical uniaxial systems between two orthogonal polarizers allow one to construct BP-C-SLMs. BP-C-SLMs double the information-handling capacity per pixel, compared to the conventional amplitude-only spatial light modulators (A-SLMs), as well as being simply implemented with a single spatial light modulator (SLM), rather than a combination of an A-SLM and a binary-phase SLMs. Under limited conditions, BP-C-SLMs can control only the amplitude in single-phase space, and act as A-SLMs.

Optically Addressed Spatial Light Modulators Using Smectic $C^*$ Liquid Crystal and Intrinsic Hydrogenerated Amorphous Silicon

  • 전형욱;손정영
    • 한국광학회:학술대회논문집
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    • 한국광학회 2000년도 제11회 정기총회 및 00년 동계학술발표회 논문집
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    • pp.298-299
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    • 2000
  • 3차원 영상을 디스플레이하기 위한 반사형 광기록식 공간 광소자(Optically Addressed Spatial Light Modulator)를 연구하였다. 다시점 영상으로 표현되는 3차원 영상을 시분할 방식으로 디스플레이 하기 위해서는 고속의 프레임 구동이 가능한 디스플레이 소자가 있어야 하는데 본 연구에서는 Surface Stabilized Ferroelectric Liquid Crystal을 이용하여 그림 1과 같은 구조를 갖는 소자를 제작하였다.$^{(1)}$ 입력상이 입사되는 방향에 1.1 미리 미터 정도의 ITO 유리 기판이 있으며 투명 전극 다음에 약 2마이크론 정도의 비결정질 구조를 갖는 Si:H 감광층이 있다. 반사형 구조를 위해서 반사경으로 알루미늄 층을 10마이크론 X 10 마이크론 크기의 미소 패턴으로 화소화하였으며 강유전성 액정 결정을 Surface Stabilized화하기 위해서 배양막과 2 마이크론 이하의 Spacer를 두었다. 일반적인 액정 소자와 같이 다시 배양막과 유리 기판을 갖게 하였다. (중략)

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공간적 광신호 변조를 위한 액정디스플레이의 두께 불균일성 보상 및 그 광변조 특성 (Compensation of the Thickness Nonuniformity in an LCD for Optical Spatial Light Modulation and its Optical Modulation Properties)

  • 정신일;김홍만;정재우;강민호;김수중
    • 대한전자공학회논문지
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    • 제25권1호
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    • pp.88-93
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    • 1988
  • For coherent optical information processing the thickness uniformity of the spatial light modulators(SLMs)is highly demanded. The liquid crystal display(LCD), which is commercialized as a pocket-sized television, is considered as one of the most cheap 2-dimensional SLM. But usually it has lack of thickness uniformity. Thus phase correction to compensate the thickness nonuniformity must be preceded before it is used as an SLM. In this paper relatively easy phase compensation method applicable to binary SLMs is discussed and experimentally verified by using the optical joint transformantion concept.

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디스플레이 현황과 발전방향 -실감 및 스킨 기기로의 확대 (Display Technologies for Immersive Devices and Electronic Skin)

  • 박영준
    • 전자통신동향분석
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    • 제34권2호
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    • pp.10-18
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    • 2019
  • Since the introduction of CRT(Cathode Ray Tube) in the 1950s, display technologies have been developed continuously. Flat panel displays such as PDP(Plasma Display Panel) and LCD(Liquid Crystal Display) were commercialized in the late 1990s, and OLED(Organic Light Emitting Diodes) and Micro-LED(Micro-Light Emitting Diodes) are now being developed and are becoming widespread. In the future, we expect to develop ultra-realistic, flexible, embedded sensor displays. Ultra-realistic display can be applied to AR/VR(Augmented Reality/Virtual Reality) devices and spatial light modulators for holography. The sensor-embedded display can be applied to robots; electronic skin; and security devices, including iris recognition sensors, fingerprint recognition sensors, and tactile sensors. AR/VR technology must be developed to meet technical requirements such as viewing angle, resolution, and refresh rate. Holography requires optical modulation technology that can significantly improve resolution, viewing angle, and modulation method to enable wide-view and high-quality hologram stereoscopic images. For electronic skin, stable mass production technology, large-area arrays, and system integration technologies should be developed.

Fabrication of Large Area Photonic Crystals with Periodic Defects by One-Step Holographic Lithography

  • Ma, Jie;Wong, Kam Sing;Li, Shan;Chen, Zhe;Zhou, Jianying;Zhong, Yongchun
    • Journal of the Optical Society of Korea
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    • 제19권1호
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    • pp.63-68
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    • 2015
  • A one-step fabrication of a photonic crystal (PC) with functional defects is demonstrated. Using multi-beam phase-controlled holographic lithography with a diffracting optical element, large area one dimensional (1D) and two dimensional (2D) PCs with periodic defects were fabricated. The uniform area is up to $2mm^2$, and tens of defect channels have been introduced in the 1D and 2D PC structure. This technique gives rise to substantial reduction in the fabrication complexity and significant improvement in the spatial accuracy of introducing functional defects in photonic crystals. This method can also be used to design and fabricate three dimensional (3D) PCs with periodic defects.

Expanded Exit-Pupil Holographic Head-Mounted Display With High-Speed Digital Micromirror Device

  • Kim, Mugeon;Lim, Sungjin;Choi, Geunseop;Kim, Youngmin;Kim, Hwi;Hahn, Joonku
    • ETRI Journal
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    • 제40권3호
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    • pp.366-375
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    • 2018
  • Recently, techniques involving head-mounted displays (HMDs) have attracted much attention from academia and industry owing to the increased demand for virtual reality and augmented reality applications. Because HMDs are positioned near to users' eyes, it is important to solve the accommodation-vergence conflict problem to prevent dizziness. Therefore, holography is considered ideal for implementing HMDs. However, within the Nyquist region, the accommodation effect is limited by the space-bandwidth-product of the signal, which is determined by the sampling number of spatial light modulators. In addition, information about the angular spectrum is duplicated over the Fourier domain, and it is necessary to filter out the redundancy. The size of the exit-pupil of the HMD is limited by the Nyquist sampling theory. We newly propose a holographic HMD with an expanded exit-pupil over the Nyquist region by using the time-multiplexing method, and the accommodation effect is enhanced. We realize time-multiplexing by synchronizing a high-speed digital micromirror device and a liquid-crystal shutter array. We also demonstrate the accommodation effect experimentally.

하다마드변환을 이용한 광소자 정렬용 다채널 광파워메터 (Multiple Channel Optical Power Meter for Optical Alignment using Hadamard Transform)

  • 조남원;윤태성;박진배;곽기석
    • 대한전기학회논문지:시스템및제어부문D
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    • 제55권5호
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    • pp.205-215
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    • 2006
  • In this paper an optical power meter using Hadamard transform, which can be used in multiple channel optical elements alignment system, is proposed. A traditional optical power meter in multiple channel optical elements alignment system is able to judge how well the elements are aligned each other by measuring optical power of the first and the last two channels with at least two detectors. It has critical drawback that the alignment accuracy per channel is dependent on the number of detectors. The proposed optical power meter can get noise reduction by the Hadamard transform based multiplexing technique. The Hadamard transform based multiplexing technique using spatial light modulators is distinguished by the best enhancement of signal-to-noise ratio (SNR) for the reconstructed signals. Moreover, the noise reduction increases with increasing the order of multiplexing, namely the number of optical element channels. The proposed system is implemented by PDLC (Polymer Dispersed Liquid Crystal) mask which is operated by electric filed and generates optimal multiplexing patterns based on the Hadamard transform and single detector. It means that we obtain not only the each channel's optical power of multiple channel elements at once but also the best enhancement of SNR with single detector. Experimental results show that the proposed optical power meter is suitable for an active optical alignment system for multiple channel optical elements.