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      • KCI등재후보

        이차 조화파 발생과 뮬러 행렬 타원법(Mueller Matrix Ellipsometry)에 의한 KDP(KH2PO4) 관찰

        이유미 ( Yu Mi Lee ),김석원 ( Sok Won Kim ) 한국화상학회 2011 한국화상학회지 Vol.17 No.1

        Second Harmonic Generation microscope according to linearly and radially polarized beam was obtained images of KDP(KH2PO4). It was used Ti-Sapphire as a light source with 100~200 femto-seconds, polarized beam(0°, 45°, 90°and right circular) in polarization state generator(PSG) respectively was transmitted KDP, and then, SH signals are detected by polarization state analyzer(PSA). We used 4 photomultiplier tubes as detectors and calculated A matrix by eigenvalue calibration method from obtained intensities. As a result, It was realized that mueller matrix can be calculated by Stokes vector and A matrix. Also, we developed polarimeter in detail in polarization principle, increased contrast and observed change of images of KDP according to polarized beam(o°, 45°, 90°, -45°, right circular and left circular).

      • KCI등재

        Mueller Matrix Ellipsometry 제작 및 응용

        방경윤,경재선,오혜근,김옥경,안일신 한국반도체디스플레이기술학회 2004 반도체디스플레이기술학회지 Vol.3 No.1

        We develop Mueller-matrix spectroscopic ellipsometry based on dual compensator configuration. This technique is very powerful for measuring surface anisotropy in nano-scale, especially when materials show depolarization. Dual-rotating compensator configuration is adopted with the rotational ratio of 5:3 originally developed by Collins et al[1]. The instrument can provide 250-point spectra over the wavelength range from 230 nm to 820 nm in one irradiance waveform with minimum acquisition time of Tc=10 s. In this work, the results obtained in transmission modes are presented for the initial attempt. We present calibration procedures to diagnose the system from the utilized data collected in transmission mode without sample. We expect that the instrument will have important applications in thin films and surfaces that have anisotropy and inhomogeneity.

      • SCIESCOPUSKCI등재
      • KCI등재

        A Mueller Matrix Study for Measuring Thermal Damage Levels of Collagenous Tissues

        Jun, Jae-Hoon The Korean Society of Medical and Biological Engin 2006 의공학회지 Vol.27 No.6

        Extensive research with polarimetry and Mueller matrix has been done for chemical measurements and possible cancer detection. However, the effect of thermally denatured biological tissue on polarization changes is not well known. The purpose of this study is to characterize polarization changes in collagen due to thermal denaturation. The variations in polarized state caused by thermal damage were investigated by obtaining the Mueller matrix elements of collagen sample at multiple thermal damage levels. The changes in birefringence of denatured collagen were also investigated. This information could be used to determine the extent of thermal damage level of clinically heat treated tissues.

      • KCI등재

        불완전한 보정기를 적용한 자유형 뮬러행렬타원계의 설계

        김상열 한국광학회 2022 한국광학회지 Vol.33 No.2

        A free-form Mueller matrix ellipsometer (MME) based on independent control of the azimuthal angle of each polarizing element is introduced. The azimuthal angles of the polarizer and the matching compensator which generate the optimum Stokes vectors of an incident beam are investigated for the polarization state generator, where the spectral responses of the retardation angle and transmittance ratio of a nonideal compensator are taken into account. Similarly, the azimuthal angles of the analyzer and the corresponding compensator are investigated for the polarization-state detector, to unambiguously determine the Stokes vector of the outcoming beam from the sample, and explicit expressions for the Stokes elements are derived. Since the suggested technique enables one to utilize a nonideal quarter-wave plate as the compensator for an MME, it will contribute to the construction and application of a Mueller matrix spectroscopic ellipsometer (MMSE) operating over a wide spectral range from deep ultra-violet to near infrared.

      • KCI등재

        Polarization Distortion and Compensation of Circularly Polarized Emission from Chiral Metasurfaces

        임연수,서인철,전영철 한국광학회 2023 Current Optics and Photonics Vol.7 No.2

        Circularly polarized (CP) emission can be achieved by integrating emissive materials into chiral metasurfaces. Such CP light sources in integrated device platforms are desirable for important potential applications. However, the exact characterization of the polarization state in CP emission may include some errors because of the unwanted polarization distortion caused by optical components (e.g., beam splitter) in the optical setup. Here, we consider CP emission measurements from chiral metasurfaces and characterize the polarization distortion caused by the beam splitter. We first detail the procedures for the Stokes parameters and Mueller matrix measurements. Then, we directly measure the Mueller matrix of the beam splitter and retrieve the original polarization state of CP emission from our metasurface sample. Using the measured Mueller matrix of the beam splitter, we specifically identify what contributes to polarization distortion in CP emission. Our work may provide useful guidelines for the characterization and compensation of polarization distortion in general Stokes parameter measurements.

      • KCI등재

        C-밴드 완전 편파 측정용 스캐터미터 시스템 보정 기술 검증

        박신명(Sin-Myeong Park),고주석(Joo-Seoc Go),주정명(Jeong-Myeong Joo),김희영(Hee-Young Kim),김주희(Ju-Hui Kim),황지환(Ji-Hwan Hwang),권순구(Soon-Gu Kwon),신종철(Jong-Chul Shin),오이석(Yisok Oh) 한국전자파학회 2012 한국전자파학회논문지 Vol.23 No.10

        본 논문에서는 미소 뮬러 행렬 보정법(differential Mueller matrix calibration technique: DMMCT)을 이용하여 C-밴드의 지상운용용 HPS(Hongik Polarimetric Scatterometer) 시스템을 보정한 연구 결과를 선보인다. 스캐터미터 시스템 보정을 위해 금속구를 이용하여 안테나 주빔에서의 편파 측정한 안테나 패턴을 챔버에서 측정하고, DMMCT를 이용하여 지상운용용 HPS의 왜곡 정도를 분석하여 정확하게 보정한다. 단일 편파 시스템과는 다르게 완전 편파 시스템에서는 후방 산란 계수뿐만 아니라 위상 변수들도 중요하다. 보정된 지상운용용 HPS를 이용하면 논, 맨땅, 작물밭 등의 지표면에 대한 정확한 Mueller 행렬을 얻을 수 있으므로, 후방 산란 계수뿐만 아니라 동일 편파와 교차 편파의 위상 변수들도 정확하게 측정하게 된다. 보정의 정확도는 산란 모델을 이용해 계산한 후방 산란 계수와 측정한 후방 산란 계수의 비교로 확인할 수 있다. 따라서 측정으로 쟁기질 한 밭의 편파 응답특성을 얻었으며, 이 결과를 이론 모델로 얻은 편파 응답 특성과 비교하여 보정 기술을 검증하였다. This paper presents a study on the calibration of a C-band HPS(Hongik Polarimetric Scatterometer) system using the DMMCT(Differential Mueller Matrix Calibration Technique). For calibration of the polarimetric scatterometer system, a fully-polarimetric antenna pattern(magnitudes and phase-differences) of the antenna main-beam is measured using a conducting sphere at anechoic chamber. The polarimetric scatterometer system could be accurately calibrated after retrieving its distortions using the DMMCT. Unlike a single-polarimetric system, in a fully-polarimetric system, not only backscattering coefficients but also phase differences are important parameters. This calibrated HPS system can be used to measure accurate Mueller matrices of bare soil surfaces, rice paddies, and vegetation fields. The phase-difference parameters as well as the backscattering coefficients for co- and cross-polarizations can then be obtained. The accuracy of calibration was verified by comparing the measured backscattering coefficients with a scattering model. The measured polarization response of a plowed bare field was also compared with the polarization response which was synthesized using a polarimetric scattering model for verifying the calibration technique.

      • KCI등재

        광 산란방법을 이용한 계면활성제 농도측정

        조영현(Young Hyeon Jo),조경현(Gyeong Hyeon Jo),정치섭(Chi Sup Jung) 대한환경공학회 2017 대한환경공학회지 Vol.39 No.8

        본 연구에서는 미세기포를 산란체로 사용한 편광산란 측정법을 이용하여 수중 계면활성제의 농도를 측정하는 방법을 개발하였다. Mueller 요소 M11은 계면활성제의 농도가 0 ppm부터 60 ppm 사이 영역에서 농도와 선형적인 비례관계를 가져 계면활성제 농도를 측정할 수 있는 유용한 파라메터로 사용될 수 있음을 알았다. 이 측정은 산란각이 150도, 소광비가 56.2 조건에서 가장 효과적 이였다. 이 연구 결과를 볼 때, 편광산란 측정법(EPLS)은 강이나 호수에서 수질을 실시간적으로 모니터하는데 있어 충분히 효과적인 수단으로 보인다. A method for measuring the concentration of surfactant in water was developed. In this technique, microbubbles were used as light scatterers. The polarization change of light scattered by microbubbles was analyzed by Mueller matrix analysis. M11, one of the Mueller matrix elements, was found to be a key parameter inferring the surfactant concentration within the concentration range of 0 ppm to 60 ppm. The best results for this measurement were obtained when the scattering angle was 150° and the extinction ratio was 56.2. This experimental result shows that the EPLS can be effectively used as a real time inspection method for water quality monitoring in lakes or rivers.

      • KCI등재

        보정된 Scatterometer의 측정데이터를 사용한 SAR 데이터 교정

        정구준,홍진영,오이석 한국전자파학회 2004 한국전자파학회논문지 Vol.15 No.2

        본 논문에서는 calibration된 scatterometer를 이용하여 SAR 데이터를 보정하는 연구 결과를 선보인다. 도체구를 이용하여 안테나 주빔에서의 polarimetric한 안테나 패턴(크기와 위상)을 측정하고, 이 데이터를 이용하여 차량 탑재형 네트워크 분석기형 scatterometer 시스템을 polarimetric하게 정확하게 보정하였다. 이 scatterometer를 이용하면 잔디밭, 논, 맨땅 등의 지표면에 대한 정확한 Mueller 행렬을 얻을 수 있으므로, 레이더 산란계수뿐만 아니라 위상변수들도 정확하게 측정하게 된다. 또한, 대부분의 SAR 시스템에는 위상변수 측정에 에러가 있게되고, polarimetric하게 보정된 scatterometer로 SAR가 측정하는 지역을 동시에 측정하여 SAR 데이터를 교정할 수 있다. 이러한 polarimetric한 보정 방법을 이용하면, 산란계수의 보정효과는 크지 않으나, hh-편파와 vv-편파간의 위상변수인 degree of correlation $\alpha$의 보정효과는 매우 큼을 알 수 있었다. This paper presents an SAR-data calibration technique using a well-calibrated scatterometer. At first a fully-polarimetric antenna pattern(magnitude and phase) of the antenna main-beam using a conducting sphere was measured. Then, this data were used to calibrate polarimetrically an auto-mounted network analyzer-based scatterometer system. This scatterometer system can be used to measure the accurate Mueller matrices of earth surfaces such as grass fields, rice fields and bare soil surfaces; i.e., the phase-difference parameters can be obtained as well as the radar scattering coefficients. If a polarimetrically calibrated scatterometer is operated at the same time with the SAR system, the scatterometer data can be used to correct the SAR data, especially the phase-difference parameters. It was found that the correction effect is remarkable for the degree of correlation ${\alpha}$, which is one of the phase-difference parameter, while the correction effect is negligible for the magnitude parameters(backscattering coefficients).

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