• 제목/요약/키워드: Thermal-optical analysis

검색결과 459건 처리시간 0.023초

Simulation Research on the Thermal Effects in Dipolar Illuminated Lithography

  • Yao, Changcheng;Gong, Yan
    • Journal of the Optical Society of Korea
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    • 제20권2호
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    • pp.251-256
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    • 2016
  • The prediction of thermal effects in lithography projection objective plays a significant role in the real-time dynamic compensation of thermal aberrations. For the illuminated lithography projection objective, this paper applies finite element analysis to get the temperature distribution, surface deformation and stress data. To improve the efficiency, a temperature distribution function model is proposed to use for the simulation of thermal aberrations with the help of optical analysis software CODE V. SigFit is approved integrated optomechanical analysis software with the feature of calculating OPD effects due to temperature change, and it is utilized to prove the validation of the temperature distribution function. Results show that the impact of surface deformation and stress is negligible compared with the refractive index change; astigmatisms and 4-foil aberrations dominate in the thermal aberration, about 1.7 λ and 0.45 λ. The system takes about one hour to reach thermal equilibrium and the contrast of the imaging of dense lines get worse as time goes on.

스윙 암 타입 초소형 광 픽업 시스템의 방열 설계 (Micro Thermal Design of Swing-Arm Type Small Form Factor Optical Pick-up System)

  • 이지나;김홍민;강신일;손진승;이명복
    • 정보저장시스템학회논문집
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    • 제2권1호
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    • pp.21-25
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    • 2006
  • The new multimedia information environment requires smaller optical data storage systems. However, one of the difficulties encountered in designing small form factor(SFF) optical pick-up is to emit the heat which is generated from laser diode(LD). Heat generated at the LD can reduce the optical performance of the system and the lifetime of LD. Therefore, it is important to include the thermal design in the design stage of SFF optical pick-up system for high performance and the longer lifetime of LD, and furthermore, to analyze the thermal characteristics of LD in detail micro heat transfer analysis is necessary. In the present study, micro heat transfer analysis was performed using the finite element method for the $28{\times}11{\times}2mm^3$ super slim swing-arm type optical pick-up actuator for Blu-ray disk. Two different materials were used for a swing-arm; a double layer polycarbonate/steel structure and a single aluminum structure.

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Beer-Lambert 법칙을 적용한 레이저 열원 프로파일 모델링 및 레이저무기용 반사경의 열변형 해석을 통한 구조-열-광학 성능 연구 (A Study on Structural-Thermal-Optical Performance through Laser Heat Source Profile Modeling Using Beer-Lambert's Law and Thermal Deformation Analysis of the Mirror for Laser Weapon System)

  • 홍대기
    • 항공우주시스템공학회지
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    • 제17권4호
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    • pp.18-27
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    • 2023
  • 본 논문에서는 열해석의 하중조건으로 레이저 열원을 설정하여 반사경의 구조-열-광학 성능 분석을 수행하였다. 레이저 열원 모델은 가우시안 빔을 바탕으로 반투명한 소재를 고려한 Beer-Lambert 법칙을 적용하여 하중조건으로 선정하였으며, 반사경만의 성능 분석을 위하여 기구부는 고려하지 않았다. 열변형해석을 수행하여 반사경 표면의 온도 변화로 인한 열응력과 열변형 데이터를 얻었다. 열변형에 의한 반사경 표면의 변위 데이터를 Zernike 다항식에 피팅하여 파면오차를 계산하였으며, 이를 통해 고에너지 레이저가 반사경으로 입사될 때 반사경의 광학 성능을 예측할 수 있었다.

Simple Graphical Selection of Optical Materials for an Athermal and Achromatic Design Using Equivalent Abbe Number and Thermal Glass Constant

  • Kim, Young-Ju;Kim, Yeong-Sik;Park, Sung-Chan
    • Journal of the Optical Society of Korea
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    • 제19권2호
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    • pp.182-187
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    • 2015
  • This paper presents a new graphical method for selecting a pair of optical glasses to simultaneously achromatize and athermalize an imaging lens made of materials in contact. An athermal glass map that plots thermal glass constant versus inverse Abbe number is derived through analysis of optical glasses and plastic materials in visible light. By introducing the equivalent Abbe number and equivalent thermal glass constant, although it is a multi-lens system, we have a simple way to visually identify possible optical materials. Applying this method to design a phone camera lens equipped with quarter inch image sensor having 8-mega pixels, the thermal defocuses over $-20^{\circ}C$ to $+60^{\circ}C$ are reduced to be much less than the depth of focus of the system.

Analysis of Kerr and thermal nonlinearities in unsatuared polymers with a nanosecond laser

  • Kim, Sang-Cheon;Choi, Moon-Goo;Park, Seung-Han;Kim, Hwan-Kyu;Lee, Ji-Hoon
    • Journal of the Optical Society of Korea
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    • 제3권2호
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    • pp.47-50
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    • 1999
  • Nonlinear optical properties of an unsaturated polymer (poly trifluroethy dipropargy malonate) are investigated by using a passive Q-switched Nd:YAG laser. Double-peaked structure of phase conjugate signals due to the two-photon-absorption induced thermal effect is clearly is clearly observed and a simple method to remove the thermal effect from the overall phase-conjugate signals is demonstrated.

초정밀 열 영상 현미경 광학계 개발 (Development of the Ultra Precision Thermal Imaging Optical System)

  • 양순철;원종호
    • 한국정밀공학회지
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    • 제27권12호
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    • pp.15-21
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    • 2010
  • Recently, there is a demand for a thermal imaging microscope in the medical field as well as the semi-conductor industry Although the demand of the advanced thermal imaging microscope has been increased, it is very difficult to obtain the technology of developing a thermal camera, because it is used for defense industry. We developed the ${\times}5$ zoom microscope which has $3\;{\mu}m$ spatial resolution to research the design and fabrication of the IR (Infrared) optical system. The optical system of the IR microscope consists of four spherical lenses and four aspheric lenses. We verified individual sensitivity of each optical parameter as the first order approach to the analysis. And we also performed structure and vibration analysis. The optical elements are fabricated using Freeform 700A. The measurement results of surface roughness and form accuracy using NT 2000 and UA3P are Ra 2.36 nm and P-V $0.13\;{\mu}m$. Finally we ascertained resolution power of $3\;{\mu}m$ using USAF (United State Air Force) 1951 IR resolution test chart.

20:1 줌 열영상 장비 비열화 분석 및 시험 (Analysis and test of athermalizaion for 20:1 zoom thermal imaging system)

  • 김현숙;최세철;최세철;이국환;박용찬;김현규
    • 한국광학회지
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    • 제12권4호
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    • pp.281-288
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    • 2001
  • 본 연구에서는 넓은 운용온도에서 열영상 장비의 광학성능을 유지하도록 하기 위한 비열화 분석 및 시험을 수행하였다. 비열화 분석은 광학계 설계를 위한 컴퓨터 프로그램인 Code-V와 SIGMA2100으로 수행하였으며 비열화 시험은 열영상 장비와 콜리메이터를 온도챔버에 함께 넣어 온도에 따른 영상을 녹화하였다. 2차원배열 검출기를 사용한 20:1 줌 열영상 장비를 가지고 비열화 시뮬레이션을 수행하였으며 그 결과를 이용하여 줌궤적을 보상하였다. 비열화 시험을 통하여 온도변화에 따라 줌궤적어 적절히 작동되어 $-32^{\circ}C-+50^{\circ}C$의 온도범위 내에서 만족할 만한 광학성능이 유지되는 것을 확인하였다.

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박막 광학 필터 디바이스의 패키징시 솔더 조인트의 피로 신뢰성 해석 (Thermal Fatigue Reliability of Solder Joints in a Thin Film Optical Filter Device)

  • 이성철;현충민;이형만;김명진;김회경;김기태
    • 대한기계학회논문집A
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    • 제28권6호
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    • pp.677-684
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    • 2004
  • Plastic and creep deformations of solder joints during thermal cycling are the main factors of misalignments and power losses in optical telecommunication components. Furthermore, the increased mismatch between solder Joint-bonded areas may cause severe failure in the components. Darveaux's creep model was implemented into a finite element program (ABAQUS) to simulate creep response of solder. Based on the finite element results, thermal fatigue reliability was predicted by using various fatigue life prediction models. Also, the effects of ramp conditions, dwelling time, and solder joint-embedding materials on the reliability were investigated under the thermal cycling conditions of the Telcordia schedule (-40∼75$^{\circ}C$).

적외선 카메라-레이저 공통광학계의 레이저빔 열 영향성 분석 (Analysis of Laser-beam Thermal Effects In an Infrared Camera and Laser Common-path Optical System)

  • 김성재
    • 한국광학회지
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    • 제28권4호
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    • pp.153-157
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    • 2017
  • 지향성적외선방해장비의 정렬 정밀도를 높히고 중량을 감소시키기 위해 적용된 적외선 카메라-레이저 공통광학계 구조에서 영상 성능 저하를 야기시키는 레이저빔 열 영향성을 분석하였다. 높은 에너지 밀도를 가지는 레이저빔이 광부품에 흡수되면 열이 발생하고 온도가 상승한다. 공통광학계 광부품 표면에서 발생한 열은 시스템 투과율을 감소시켜 적외선 카메라의 영상 품질을 저하시킬 수 있다. 지향성적외선방해장비의 운용개념을 고려하여 파장 $4{\mu}m$, 출력 3 W의 레이저빔이 10초간 미러(알루미늄, 실리카 글래스, 실리콘) 및 렌즈(사파이어, 셀레늄화아연, 실리콘, 게르마늄) 재료에 조사되는 상황을 가정하여 온도 분포를 계산하였다. 계산 결과, 미러 재료로는 실리카 글래스, 렌즈 재료로는 사파이어의 온도 상승이 상대적으로 컸고, 재료 온도 분포에 가장 큰 영향을 미치는 요소는 재료의 레이저빔 흡수율과 열전도도임을 확인하였다. 결론적으로 적외선 카메라-레이저 공통광학계에 사용하는 광부품은 흡수율이 낮고 열전도도가 높은 특성을 갖도록 선정되어야 광부품 온도 상승에 의한 적외선 카메라의 영상 품질 저하를 방지할 수 있다.

열광학적 분석 프로토콜에 의한 유기탄소와 원소탄소 측정값 비교 (Comparison of OC and EC Measurement Results Determined by Thermal-optical Analysis Protocols)

  • 김효선;정진상;이진홍;이상일
    • 한국대기환경학회지
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    • 제31권5호
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    • pp.449-460
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    • 2015
  • Carbonaceous aerosol is generally classified into OC (organic carbon) and EC (elemental carbon) by thermal optical analysis. Both NIOSH (National institute of occupational safety and health) with high temperature (HighT) and IMPROVE-A (Interagency monitoring of protected visual environments) with low temperature (LowT) protocols are widely used. In this study, both protocols were applied for ambient $PM_{2.5}$ samples (Daejeon, Korea) in order to underpin differences in OC and EC measurements. An excellent agreement between NIOSH and IMPROVE-A protocol was observed for TC (total carbon). However, significant differences between OC and EC appeared and the differences were larger for EC than OC. The main differences between two protocols are temperature profile and charring correction method. For the same charring correction method, HighT_OC was 10% higher than LowT_ OC, while HighT_EC was 15% and 33% lower than LowT_EC for TOT (thermal-optical transmittance) and TOR (thermal-optical reflectance), respectively. This difference may be caused by the temperature of OC4 in He step and possibly difference in POC (pryorilized OC) formation. For the same temperature profile, OC by TOT was about 26% higher than that by TOR. In contrast, EC by TOT was about 50% lower than that by TOR. POC was also dependent on both temperature profile and the charring correction method, showing much distinctive differences for the charring correction method (i.e., POC by TOT to POC by TOR ratio is about 2). This difference might be caused by different characteristics between transmittance and reflectance for monitoring POC formation within filters. Results from this study showed that OC and EC depends on applied analysis protocol as shown other studies. Because of the nature of the thermal optical analysis, it may not be possible to have an absolute standard analysis protocol that is applicable for any ambient $PM_{2.5}$. Nevertheless, in order to provide consistent measurement results for scientists and policy makers, future studies should focus on developing a harmonized standard analysis protocol that is suitable for a specific air domain and minimizes variations in OC and EC measurement results. In addition, future elaborate studies are required to find and understand the causes of the differences.