• Title/Summary/Keyword: Lens transmittance

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Study on the Synthesis and Physical Properties of Ophthalmic Polymer Containing Gold Nanoparticles (금 나노입자를 포함한 안의료용 고분자의 합성 및 물성에 관한 연구)

  • Ye, Ki-Hun;Sung, A-Young
    • Journal of the Korean Chemical Society
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    • v.54 no.2
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    • pp.222-227
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    • 2010
  • This study added Au colloid in martial of conventional contact lens in various concentrations and copolymerized by heating at $70^{\circ}C$ for 40 minutes, $80^{\circ}C$ for 40 minutes, and finally, $100^{\circ}C$ for 40 minutes. Using the polymer produced through the copolymerization process, we have produced a contact lens and measured the physical characteristics which showed oxygen transmissibility of $9{\sim}12{\times}10^{-9}$ cm/s mL $O_2$/mL ${\times}$ mmHg, water content of 27.84% ~ 32.17%, refractive index of 1.432 ~ 1.443, visible transmittance of 83.2% ~ 89.5% and tensile strength of 0.141 kgf ~ 0.152 kgf. The polymer satisfied the physical properties required to produce contact lenses. Also, we judged that the polymer is suitable to be applied as a functional material for ophthalmological purposes.

Characteristics of Heavy Metal Oxide Glasses in BaO-GeO2-La2O3-ZnO-Sb2O3 System for Infrared Lens (적외선 렌즈용 BaO-GeO2-La2O3-ZnO-Sb2O3계 중금속 산화물 유리의 특성)

  • Sang-Jin Park;Bok-Hyun Oh;Sang-Jin Lee
    • Korean Journal of Materials Research
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    • v.33 no.10
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    • pp.414-421
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    • 2023
  • Infrared radiation (IR) refers to the region of the electromagnetic radiation spectrum where wavelengths range from about 700 nm to 1 mm. Any object with a temperature above absolute zero (0 K) radiates in the infrared region, and a material that transmits radiant energy in the range of 0.74 to 1.4 um is referred to as a near-infrared optical material. Germanate-based glass is attracting attention as a glass material for infrared optical lenses because of its simple manufacturing process. With the recent development of the glass molding press (GMP) process, thermal imaging cameras using oxide-based infrared lenses can be easily mass-produced, expanding their uses. To improve the mechanical and optical properties of commercial materials consisting of ternary systems, germanate-based heavy metal oxide glasses were prepared using a melt-cooling method. The fabricated samples were evaluated for thermal, structural, and optical properties using DSC, XRD, and XRF, respectively. To derive a composition with high glass stability for lens applications, ZnO and Sb2O3 were substituted at 0, 1, 2, 3, and 4 mol%. The glass with 1 mol% added Sb2O3 was confirmed to have the optimal conditions, with an optical transmittance of 80 % or more, a glass transition temperature of 660 ℃, a refractive index of 1.810, and a Vickers hardness of 558. The possibility of its application as an alternative infrared lens material to existing commercial materials capable of GMP processing was confirmed.

A Study on Color Distortion according to Colors and Luminous Transmittance of Lenses using Word-color Test (단어-색채검사를 이용한 렌즈의 색상과 시감투과율에 따른 색상왜곡에 관한 연구)

  • Lee, Gyeong Sun;Jung, Su A;Kim, Chang Jin;Yang, Seok Jun;Oh, Sang-Young;Jeon, Byoung Jin;Kim, Hyun Jung;Choi, Eun Jung
    • Journal of Korean Ophthalmic Optics Society
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    • v.19 no.4
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    • pp.513-518
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    • 2014
  • Purpose: This study was to investigate color distortion by colors and luminous transmittance of lenses with word-color test included in computerized neurocognitive function test (CNT). Methods: 32 subjects aged $21.97{\pm}1.58$ years with no ocular disease and color vision deficiency were selected. Four colors of tinted lenses, which were red, green and blue included in the primary colors of light and pink, and word-color test in CNT to evaluate changes in cognitive function by color distortion were used. Results: Response time was not significantly increased in green, blue, and pink among four colors, but significantly increased in only red color. And response time was significantly increased below 46% of luminous transmittance in red color. Conclusions: It should be cautious and careful of the red-tinted lens choice because red color with below 46% of luminous transmittance can distort colors of objects, and it could be related to safety problem. It is suggested that word-color test could be extensively used for further studies on color recognition.

Polymer Eyeglass Lens with Ultraviolet & High-Energy Visible Light Blocking Function for Eye Health (자외선 및 고에너지 가시광 차단 기능을 갖는 눈 건강을 위한 폴리머 안경렌즈)

  • Kim, Ki-Chul
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.21 no.12
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    • pp.10-15
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    • 2020
  • Ultraviolet rays, which have wavelengths smaller than 400 nm, are very harmful to the eyes. Recently, high-energy visible light was also revealed to be harmful to retinal cells. Therefore, polymer eyeglass lenses that can block UV and high-energy visible light are needed for eye health. In this study, high-refractive-index polymer eyeglass lens, n=1.67, were manufactured using the injection-mold method with the m-xylene diisocyanate monomer, 2,3-bis((2-mercaptoethyl)thio)-1-propanethiol monomer, benzotriazole UV absorber, release of alkyl phosphoric ester, dye mixture of CI solvent violet 13, and catalyst of dibutyltin dichloride mixture. A multi-layer anti-reflection coating was applied to manufactured polymer eyeglass lenses for both sides using an E-beam evaporation system. The optical properties of the manufactured lenses with the UV and high-energy visible light-blocking function were analyzed by UV-visible spectrophotometry. As a result, the polymer eyeglass lens with a UV absorber of 0.5 wt. % blocked 99% of UV and high-energy visible light shorter than 411 nm. The average transmittance of the polymer eyeglass lens with a UV absorber of 0.5wt.% was 97.9% in the range of 460 ~ 660 nm for photopic eye sensitivity higher than 10%. Therefore, clear image acquisition in photopic vision is possible.

Change of Contrast Sensitivity According to Light Transmittance of Color Lens (색렌즈의 광투과율에 따른 대비감도 변화)

  • Lee, Sun-Haeng;Lee, Yoon-Jeong;Cho, Hyun-Gug
    • Proceedings of the KAIS Fall Conference
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    • 2009.12a
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    • pp.925-929
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    • 2009
  • 본 연구는 착색렌즈의 광투과율에 따른 명소시 대비감도의 변화를 분석하여 색렌즈를 착용할 때 색상에 따른 적절한 광투과율 기준을 제시하고자 하였다. 정상 시기능을 가진 남자 24명과 여자 13명을 대상으로, 광투과율 80~90%, 60~80%, 43~60%, 30~43%로 착색된 4개의 색렌즈(회색, 갈색, 적색, 녹색)를 순서대로 착용시키고 F.A.C.T. 시표를 이용하여 대비감도 검사를 실시하였다. 검사 결과, 광투과율이 감소될수록 대비감도는 감소되었고, 시감도는 갈색이 가장 높은 것으로 나타났고, 반대로 적색이 가장 낮은 것으로 나타났다. 대비감도 검사결과를 고려한 색상별 권장 광투과율은 갈색, 회색과 녹색 38% 이상, 적색 52% 이상인 것으로 나타났다. 이러한 결과들로 보아 일상생활에서 눈을 보호할 목적으로 색렌즈를 선택할 때 색상과 그 색상에 적절한 광투과율이 고려되어야 한다.

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Thermo-Optic Tunable Filter and Packaging for Micro-Optical Bench (열광학 효과를 이용한 파장 가변 필터와 미세광학벤치를 이용한 패키징)

  • 박헌용;황병철;이승걸;오범환;이일항;박세근
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2003.06a
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    • pp.203-206
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    • 2003
  • Thermo-optic tunable filter, with 4-pairs of H/L layers for DBR, was designed and fabricated. The transmittance characteristics of the filter were measured. Additionally, heating system and temperature sensor system were used in order to observe property of the filter by thermo-optic effect. The tuning efficiency of the filter was measured to be 0.144nm/K$^{-1}$ showing the tuning range of 9.4nm for the temperature variation of 64.7$^{\circ}C$. Filter, lens and fiber were aligned by micro-optical bench.

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Making sung lass lens by using ferrite plating and the effect of cutting off ultraviolet (페라이트 도금법에 의한 선글라스 렌즈의 제작과 자외선 차단효과)

  • Ha, T.W.;Cha, J.W.
    • Journal of Korean Ophthalmic Optics Society
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    • v.7 no.1
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    • pp.35-38
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    • 2002
  • Ferrite thin film with glass substrate was prepared by ferrite plating method in order to make sunglass which cut off ultraviolet and electromagnetic field. It has single phase of polycrystalline spinel structure and has gloss like as mirror and has hardness without scratch by scraping with nail. The transmittance of ferrite thin film is lowered near 400nm manifestly, which shows that the ferrite thin film was cut off ultraviolet successfully. Therefore, the sunglass with ferrite plating is use of cut of ultraviolet and electromagnetic field.

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Simulation of ND Filter for Terrestrial Laser Scanner (3차원 레이저 스캐너용 ND 필터의 시뮬레이션)

  • Yang, Soo-Hyo;Oh, Dong-Geun;Jeong, Joong-Yeon
    • Proceedings of the Korean Society of Surveying, Geodesy, Photogrammetry, and Cartography Conference
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    • 2009.04a
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    • pp.65-73
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    • 2009
  • The terrestrial laser scanner measures the signal delay time of electronic circuit in EDM(Electronic Distance Measurement) Module for distance measurement. To measure signal delay time precisely, transmitting laser beam of terrestrial laser scanner is divided optically. Therefore, 10% of the laser beam power is entered into the electronic circuit and the others go out through lens. But, measure of delay time is severe in the laser scanner system that the laser beam power is changed dynamically by reflectance of a object, because characters like gain of electronic circuit involving APD(Avalanche Photo Diode) and so on are changed by incident laser beam. Therefore, we adapt ND(Neutral Density) filter that has grid pattern to the laser scanner system to keep constant the incident laser beam power. In this paper, we propose the simulation program for efficient design of ND filter pattern. Finally, to affirm simulation program, we conduct the experimental test of simulated ND filter that has linearly transmittance change, and we consider the experiment result.

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x$^{(3)}$ Measurement through Self-focusing with Non-gaussian Beam (비 Gaussian 빛에 의한 자체집광을 이용한 x$^{(3)}$측정)

  • 이범구
    • Korean Journal of Optics and Photonics
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    • v.4 no.4
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    • pp.428-433
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    • 1993
  • The second harmonic of Q-switched Nd:YAG laser beam with gaussian mode is cut off by pinhole of a certain radius and its central portion passed through pinhole is focused by converging lens. It is confirmed that the shape of this beam in focal region is central symmetric but non-gaussian. Change of transmittance due to self-focusing is investigated by scanning (z-scan) $CS_2$ of 1 mm thickness in the focal region. It is found that the observed results can be consistently explained by Fresnel theory within 1.5% accuracy and efficiency of self-focusing depends on spatial shape of incident beam.

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Analysis and Design of half-mirror coating for sunglasses (썬글라스용 반미러(Half-Mirror) 코팅의 분석과 설계)

  • Park, Moon-Chan;Jung, Boo-Young;Hwangbo, Chang-Kwon
    • Journal of Korean Ophthalmic Optics Society
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    • v.8 no.2
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    • pp.111-117
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    • 2003
  • We collected the domestic and foreign half-mirror coating lens for sunglasses. Their reflectance is measured using Spectrophotometer in order to analysis their optical property and the result which is calculated using Macleod program was compared with measured reflectance. In addition, we designed the new half-mirror coating lens with gold color using TiN material and investigated the optical property of the new half-mirror coating lens. The results obtained from analysis of half-mirror coating lenses are as follow : Two-tone half-mirror coating with silver color is fabricated with [air|$SiO_2$(or $Al_2O_3$)|Cr|glass]. The role of $SiO_2$(or $Al_2O_3$) on Cr improve the hardness of the lens and the thickness of the $Al_2O_3$ with 10 nm is good to show the lens silver color. Incase of color half-mirror coating lens. Blue system is designed by [air|$SiO_2$(66.3)|$TiO_2$(129.0)|$SiO_2$(62.9)|$SiO_2$(26.0)|$TiO_2$(120.3)|$SiO_2$(9.1)|glass], gold system [air|$SiO_2$(60.6)|$TiO_2$(86.2)|$SiO_2$(13.5)|$TiO_2$(86.8)|$SiO_2$(214.38)|glass], green system[air|$SiO_2$(74.3)|$TiO_2$(75.8)|$SiO_2$(44.3)|$TiO_2$(11.6)|$SiO_2$(160.8)|$TiO_2$(12.9)|$SiO_2$(183.3)|$TiO_2$(143.8)|glass], silver system[air|$SiO_2$(21.2)|$TiO_2$(49.7)|$SiO_2$(149.3)|glass]. White half-mirror coating lens has [air|$SiO_2$(17 nm)|$TiO_2$(43 nm)(or $ZrO_2$)|$SiO_2$(87 nm)|polysiloxane($4.46{\mu}m$|glass or CR-19]. It has half-mirror coaling lens which has about 19% reflectance and about 80% transmittance in the range of visible light(400~700nm). we designed the new half-mirror coating lens with gold color, the (x, y) value of the CIE is almost similar to the CIE value of [air|$SiO_2$(170 nm)|TiN(15 nm)|glass].

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