• Title/Summary/Keyword: optical recording medium

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Recording and Retrieving of Angular Multiplexed Near-field Holograms (근접장 홀로그램의 각도 다중화 저장 및 재생)

  • 김경염;이병호
    • Proceedings of the Optical Society of Korea Conference
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    • 2001.02a
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    • pp.60-61
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    • 2001
  • We present our experimental results on the recording and retrieving of multiplexed near-field holograms using near-field scanning optical microscopy (NSOM) and a conventional rectangular-parallelepiped or cubic photorefractive crystal. Experimental results show that we can get the angular selectivity comparable with that of the volume hologram and the retrieved spot size was smaller than the Rayleigh's limit. The results also show that the angular selectivity and the retrieved spot size are strongly dependent on the recording distance between the object and the recording medium.

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The Thermal and Optical Properties of Te-based Antireflection structure for Optical Recording (광기록을 위한 Te-based Antireflection구조의 열적, 광학적 특성)

  • Lee, S.J.;Lee, H.Y.;Chung, H.J.;Lee, Y.J.
    • Proceedings of the KIEE Conference
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    • 1993.07b
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    • pp.1256-1258
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    • 1993
  • Optical data storage offer high density storage and archival storage capability. In this study, we selected the ablation mechanism-one of an irreversible recording system-using the antireflection trilayer(ART) structure. Optical recording medium is a $(Te_{86}Se_{14})_{50}Bi_{50}$ thin films. Actually, ART structure is fabricated and compared to monolayer structure. ART structure leads to the reduction of recording power as well as an increase in the effciency compared to the monolayer structure.

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The Characteristics of Te-light doped S $b_{85}Ge_{15}$Thin Film as Phase Change Optical Recording Media (Te 을 미세 도핑한 S $b_{85}Ge_{15}$ 상변화 기록 박막의 특성)

  • 김종기;김홍석;이영종;정홍배
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1997.04a
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    • pp.20-22
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    • 1997
  • In ours study, we investigated the various properties in Te-light doped $Sb_{85}$G $e_{15}$ thin films such as the change of reflectance and transmittance according to phase change from amorphous to crystalline states In all films the transmittance was decreased, but the reflectance was increased by annealing. Particularly, the reflectance between as- deposited state and annealed state showed the largest change in the T $e_{0.5}$($Sb_{85}$G $e_{15}$ )$_{99.5}$ thin film at 780nm, which was about 40% in as-deposited state and about 70% in annealed state. Therefore, it might be considered that the T $e_{0.5}$($Sb_{85}$G $e_{15}$ )$_{99.5}$ thin film is recording medium showing to a good optical properties if it is used to optical recording of the phase change type. change type.ype.

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Analysis for PSA Tolerance of TAMR Suspension (열 보조 자기기록용 서스펜션의 PSA 허용오차에 대한 분석)

  • Kim, Ki-Hoon;Lee, Yong-Hyun;Kim, Seok-Hwan;Lee, Sang-Jic;Park, No-Cheol;Park, Young-Pil;Park, Kyoung-Su
    • Transactions of the Society of Information Storage Systems
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    • v.6 no.1
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    • pp.12-17
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    • 2010
  • Thermally-assisted magnetic recording (TAMR) is a potentially promising approach to increase the storage density of hard disk drive (HDD). However, TAMR has some issues such as temperature effects, media problems, thermal deformation and light delivery. In this research, we focused on light delivery. One of the powerful methods to deliver the light from laser diode to recording medium is the use of an optical fiber and a specially designed prism. However, the TAMR with optical fiber may have some flyability problems induced by the mounted optical fiber and prism. Also, the TAMR suspension using an optical fiber has high vertical and pitch stiffness. Therefore, p-torque is greatly increased by the optical fiber. Also, flying height (FH) of the slider with TAMR suspension can be largely changed by p-torque. Therefore, in this paper, we focus on the pitch static attitude (PSA) tolerance and the FH by PSA of the TAMR suspension. The FH is investigated using various errors and the PSA tolerance for TAMR suspension is proposed.

Holographic disk memories based on localized hologram recording (국소 홀로그램 기록방식에 기초한 홀로그래픽 디스크 메모리)

  • 오용석;김복수;장주석;강영수
    • Korean Journal of Optics and Photonics
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    • v.14 no.6
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    • pp.663-668
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    • 2003
  • We studied a localized hologram recording method that can be used in a disk-shaped medium. In this method, the reference beam is focused by use of a cylindrical lens to get a thin spot in the medium, and then a hologram is recorded in that spot by illuminating the signal beam. Many localized holograms are multiplexed by shifting the medium by a distance more than the thin spot size of the reference beam. This method does not need recording-time scheduling for uniform diffraction efficiencies. We show that a minimal required thickness of the recording medium exists for a given spot size of the signal beam. We performed experiments for data storage and retrieval, and obtained a storage density of 20 bits/${\mu}{\textrm}{m}$$^2$ and a raw-bit error rate (RBER) of 2.5${\times}$10$^{-3}$ , when a 2 mm-thick Fe-doped LiNbO$_3$ crystal was used.

Photorefractive Polymer System with a Low Glass Transition Temperature for a Holographic Recording

  • Kim, Nam-Jun;Chun, Hyun-Aee;Moon, In-Kyu;Joo, Won-Jae;Kim, Nak-Joong
    • Bulletin of the Korean Chemical Society
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    • v.23 no.4
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    • pp.571-574
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    • 2002
  • The photorefractive polymeric composite with good performance was prepared. The carbazole-substituted polysiloxane sensitized by 2,4,7-trinitro-9-fluorenone was used as a photoconducting medium and 1-[4-(2-nitrovinyl)phenyl]piperidine was added as an optically nonlinear chromophore. The photorefractive property of polymer was determined by diffraction efficiency using a 100 ㎛-thick film. The maximum diffraction efficiency ( ηmax) of 71% was obtained at the electric field of 70 V/ ㎛. The potential of the current polymer material as a holographic recording medium was evaluated by the demonstration of holographic recording and subsequent reading of optical image.

Diffraction Efficiency Analysis of Silver Halide Film for Color Holography Recording

  • Park, Sung Chul;Kim, Sang Il;Son, Kwang Chul;Kwon, Soon Chul;Lee, Seung Hyun
    • International Journal of Internet, Broadcasting and Communication
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    • v.7 no.2
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    • pp.16-27
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    • 2015
  • Holography technology which was developed by Dennis Gabor (1900~1979) in 1948 is a technology to record wave planes of actual 3D objects. It is known as the only technology which can express 3D information most perfectly close to human-friendly. Holography technology is widely used in advertisement, architecture and arts as well as science technology areas. Especially, digital holographic print which is an applied area is greatly used in military map, architecture map and cultural asset restoration by printing and reproducing 3D information. Holography is realized by recording and reproducing the amplitude and phase information on high resolution film using coherent light like laser. Recording materials for digital holographic printer are silver halide, photoresist and photopolymer. Because the materials have different diffraction efficiency according to film characteristics of each manufacturer, appropriate guide lines should be suggested through efficiency analysis of each film. This paper suggests appropriate guide lines through the diffraction efficiency measurement of silver halide which is a holographic printer recording medium. And the objective of this study is to suggest appropriate guide lines through diffraction efficiency analysis of Ultimate 08-C and PFG-03C which are commercially used. The experiment was prepared by self-diffraction efficiency system which measures the strength with the defector by penetrating RGB recording medium and concentrating diffracted beams through collimating lens. The experiment showed Geola's PFG-03C which is a silver halide for full color has price/performance advantage in optical hologram recording, but recording angles and reproduction angles are irregular for digital holographic printer recording. Ultimate's Ultimate08-C for full color shows its diffraction efficiency is relatively stable and high according to recording angles and laser wavelength.

Optimum Growth Condition of Phase Change GeSbTe Thin Films as an Optical Recording Medium using in situ Ellipsometry (In situ 타원법을 사용한 광기록매체용 GeSbTe 박막의 최적성장조건 연구)

  • 이학철;김상열
    • Proceedings of the Optical Society of Korea Conference
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    • 2003.02a
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    • pp.78-79
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    • 2003
  • 타원법(ellipsometry)을 사용하여 광기록 매체용 Ge$_2$Sb$_2$Te/sub 5/(GST) 박막의 성장과정에 따른 타원상수 Ψ와 $\Delta$를 측정하여, GST 박막의 최적성장조건을 연구하였다. 아르곤기체압력과 DC 출력 그리고 기판의 온도를 변화시키면서 GST 박막을 성장시켰다. 제작된 시료들의 분광타원 데이터를 모델링분석하여 GST 박막의 밀도분포를 구하고 한편으로는 GST 박막이 성장하는 동안 측정한 in situ 타원 성장곡선을 분석하여 박막의 밀도분포의 변화를 추적하였다. (중략)

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A Study on the Implementation of a Portable Hologram Recording System for Optical Education

  • Cheolyoung, Go;Juyoung, Hong;Kwangpyo, Hong;Eunyeop, Shin;Leehwan, Hwang;Soonchul, Kwon;Seunghyun, Lee
    • International Journal of Advanced Culture Technology
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    • v.10 no.4
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    • pp.478-486
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    • 2022
  • Holography is a human-friendly technology that can express 3D stereoscopic information without eye fatigue. You can experience the mysterious features of light directly and indirectly, and you can also experience the principles of 3D imaging, which makes it a very good curriculum. As such, although holography is very effective in teaching students optics and 3D imaging technology, it has not yet been systematically established. The reason is the cost burden such as expensive equipment and laboratories, and the lack of easily accessible educational equipment. We implemented a portable holographic recording system to solve this problem. In addition, since silver halides, which use harmful chemicals, are not used in the process of developing the recording medium, and photopolymers are used, it is possible to educate not only the general public but also young students. In order to improve the completeness of the recorded result, the mechanism part, light source, and recording medium part of the production system were newly constructed to complement all the existing problems. The proposed system will make holography easily accessible to many people in a variety of fields, not just education. Through the interesting experience of various features and principles of light and the production of holograms with high satisfaction, we hope to popularize them in various fields such as education.