• Title/Summary/Keyword: 백색광

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Photosynthesis Rate of American Ginseng under the different Monochromatic Light (미국인삼의 광합성에 미치는 단색광의 영향)

  • ;John T. A. Proctor
    • Journal of Ginseng Research
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    • v.12 no.1
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    • pp.87-91
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    • 1988
  • Photosynthesis rates of ginseng (Panax quinquefolium) leaves were measured in a controlled environment at $20^{\circ}C$ under the different monochromatic light such as white(W), red(R) and blue(B) to obtain basic information applicable to the colored shading material for the ginseng growth. Photosynthesis rate relative to white(W) light was generally higher in R and lower in B comparing to white(W) light. This difference was negligible at the close to the light-saturation point, whereas the difference among the monochromatic light was extended with decreasing the irradiant. It suggests that red is good in color of shading material for growth of American ginseng.

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Effects of Various LEDs on the Seed Germination, Growth and Physiological Activities of Rape (Brassica napus) Sprout Vegetable (몇 가지 LED가 유채의 종자발아, 초기 생장 및 생리활성에 미치는 영향)

  • Cho, Ja-Yong;Son, Dong-Mo;Kim, Jong-Man;Seo, Beom-Seok;Yang, Seung-Yul;Kim, Byoung-Woon;Heo, Buk-Gu
    • Korean Journal of Plant Resources
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    • v.21 no.4
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    • pp.304-309
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    • 2008
  • All the seeds of rape (Brassica napus) sprout vegetables were germinated within three days after seeding irrelevant to the light colors. The total fresh weight of rape sprout vegetables at 6 days after seeding have been increased when grown under green and white color lights by 0.339g/10plants and 0.339g/10plants compared with the control. The total flavonoid contents in rape sprouts were increased under red and blue lights by 72.5 and 70.9mg${\cdot}L^{-1}$. Those DPPH radical scavenging activities at 2,000mg${\cdot}L^{-1}$ were increased by 90.0 and 90.3% which were sprouted and grown under blue and white lights. Nitrite radical scavenging activity of sprouts were most decreased compared with the control when grown under the red light by 57.4mg${\cdot}L^{-1}$. And mushroom tyrosinase inhibition activity of rape sprouts was extremely increased under the green light by 22.5mg${\cdot}L^{-1}$.

녹색과 적색 양자점 색변환층을 가지는 백색 유기발광 소자의 색안정성 연구

  • Jeon, Yeong-Pyo;Kim, Gi-Hyeon;Kim, Tae-Hwan
    • Proceedings of the Korean Vacuum Society Conference
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    • 2014.02a
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    • pp.396.1-396.1
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    • 2014
  • 백색 유기발광소자는 빠른 응답속도, 높은 색재현율 및 높은 색안정성의 특성으로 차세대 친환경 백색 광원으로 많은 주목을 받고 있다. 유기발광소자와 양자점을 혼합하여 사용한 백색 유기발광소자는 양자점의 높은 색순도와 고효율의 장점을 가지고 있기 때문에 연구가 활발하게 진행되고 있다. 녹색 및 적색 양자점을 색변환층으로 이용한 백색 유기발광소자는 두 양자점의 혼합 비율에 따라 연색성 및 색안정성이 변화하기 때문에 이에 관련 된 연구가 필요하다. 본 연구에서는 높은 색안정성을 가지는 백색 유기발광소자를 제작하기 위해 청색 유기발광소자 위에 용액 공정으로 녹색 및 적색 빛을 방출하는 CdSe/ZnS 양자점을 포함하는 색변환층을 도포했다. 녹색 및 적색 양자점은 250 nm부터 500 nm의 넓은 광 흡수대역을 가지고 있기 때문에 465 nm의 청색 발광소자의 빛을 흡수하여 각각 적색과 녹색 발광을 할 수 있다. 녹색 및 적색 양자점의 혼합 비율에 따른 광발광 스펙트럼 측정 결과를 통해 녹색 및 적색 양자점의 최적 혼합 비율이 7:3임을 확인하였다. 최적의 혼합 비율을 사용하여 제작 된 백색 유기발광소자의 전기적 및 광학적 특성을 전류-전압 측정과 전계발광 측정으로 비교 분석하였다. 9 V에서 14 V로 전압이 변화하는 동안 백색 유기발광소자의 색좌표의 변화는 (0.35, 0.33)에서 (0.35, 0.32)로 높은 색안정성을 나타냈다. 본 연구 결과는 유기발광소자와 양자점을 혼합하여 사용한 백색 유기발광소자의 높은 색안정성에 대한 기초자료로 활용할 수 있다.

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Attract effect of mushroom flies with different wavelength of light emitting diode(LED) (파장별 LED 광이 버섯파리의 유인에 미치는 영향)

  • Kim, Hyeong Hwan;Kim, Dong Hwan;Jung, Young Hak;Yang, Chang Yeol;Kang, Taek Jun;Jeon, Sung Wook
    • Journal of Mushroom
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    • v.12 no.4
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    • pp.375-378
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    • 2014
  • The attractions of Lycoriella ingenua to different LED light sources were investigated in the mushroom cultivations which were located in Yongin of Gyeonggi-do province and Buyeo of Chungcheongnam-do Province. The LED light sources which were used in the investigations were white, green, red, blue and orange. Numbers of Lycoriella ingenua to LED lights in Yongin and Buyeo were 132.9 and 3,272.5 to white LED source, 120.3 and 3,109.5 to green LED source, 105.5 and 1,910.1 to red LED source, 88.3 and 2,708.3 to blue LED source and 46.7 and 2,465.5 to orange LED source, respectively. The numbers of Lycoriella ingenua to LED light sources were 2.7~3.5 times higher than the ones of untreated.

Thin film thickness profile measurement using white light scanning interferometry (백색광 주사 간섭법을 이용한 박막의 두께 형상 측정법)

  • 김기홍;김승우
    • Korean Journal of Optics and Photonics
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    • v.10 no.5
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    • pp.373-378
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    • 1999
  • White light scanning interferometry is increasingly used for precision profile metrology of engineering surfaces, but its current application is primarily limited to opaque surfaces with relatively simple optical reflection behaviors. In this paper, a new attempt is made to extend the interferometric method to the thickness profile measurement of transparent thin film layers. An extensive frequency domain analysis of multiple reflection is performed to allow both the top and bottom interfaces of a thin film layer to be measured independently at the same time using nonlinear least squares technique. This rigorous approach provides not only point-by-point thickness probing but also complete volumetric film profiles digitized in three dimensions.

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Phase change on reflection in a white-light interferometer as polarization is changes (백색광주사간섭계에서 편광을 고려한 반사시 위상 변화에 대한 연구)

  • 김영식;김승우
    • Korean Journal of Optics and Photonics
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    • v.15 no.4
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    • pp.331-336
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    • 2004
  • The phase change due to the reflection from target surfaces in a white-light interferometer induces measurement errors when target surfaces are composed of dissimilar materials. We prove that this phase change on reflection as the polarization of the white-light changes causes a shift of both envelope peak position and fringe peak position of several tens of nanometers as the polarization of the white-light changes. In addition, we propose a new equation for white-light interference fringes depending on the polarization of the source.

Indoor Position Estimation Using Stereo Image Sensor and LEDs (스테레오 이미지 센서와 LED 조명을 이용한 실내 측위)

  • Moon, Myoung-Geun;Choi, Su-Il
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.39B no.11
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    • pp.755-762
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    • 2014
  • In recent year, along with the rapid development of LED technology, many applications using LEDs with Visible Light Communication(VLC) have been researched. Since it is easy to provide LOS communication environment along with cheap deployment cost, the indoor positioning system based on VLC has been actively studied. In this paper, we propose an accurate indoor positioning algorithm using a stereo image sensor and white-light LEDs with the visible light communication. Indoor white-light LEDs are located at the ceiling of a room and broadcast their position information by VLC technology. Mobile receiver with stereo image sensor receives LED position information by VLC and estimates its position and angle information. Simulation results are given to show the efficiency of proposed indoor positioning algorithm.

Optical design of RGB LED cluster lamps (RGB LED를 이용한 전구의 광학설계)

  • 김완호;여인선
    • Proceedings of the Korean Institute of IIIuminating and Electrical Installation Engineers Conference
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    • 2001.11a
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    • pp.129-132
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    • 2001
  • LED는 오랫동안 가전제품이나 각종 기계의 표시소자로 사용되어 왔으나, 최근 LED가 고취도화 되면서 LED를 이용한 조명제품 개발이 활발하게 이루어지고 있다. 본 논문에서는 RGB LED를 이용한 LED 전구를 설계하기 위해 광학설계 프로그램 LightTools을 이용하였다. RGB LED의 비율과 배치에 따른 태양광과 비슷한 백색광을 얻기 위해 RGB LED의 비율을 R:G:B=1:1.5:3, 하여 CIE 색좌표 x:y=0.342: 0.291, 색온도 5100[K]의 값을 얻었다. RGB LED의 대칭, 원형, 간격별 배열에 따른 배치를 통하여 색좌표 x:y= 0.337: 0.297인 백색광을 얻었다. 이 같은 결론을 바탕으로 RGB LED전구를 설계하였다.

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Implementation of the Equalization Circuits for High Bandwidth Visible Light Communications Using Phosphorescent White LED (인광성 백색 LED의 가시광 통신 변조 대역폭 향상을 위한 등화기 구현)

  • Sohn, Kyung-Rak
    • Journal of Advanced Marine Engineering and Technology
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    • v.39 no.4
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    • pp.473-477
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    • 2015
  • In this paper, a commercial phosphorescent white light-emitting diode (WLED) visible light communication (VLC) system with an equalization circuit to achieve the high modulation bandwidth was designed and demonstrated. An analytical method to examine the performance of the equalizer was carried out using a general circuit-simulator, PSpice. The equalization circuit was composed of two passive filters with resisters and a capacitor and an active filter with an op-amp. Utilizing our post-equalization technology, the ~3.5 MHz bandwidth of phosphor WLED could be extended to ~25 MHz without using an optical blue-filter. In this VLC system with a single round-type WLED and a single PIN photo-diode, ASK data transmission up to 35 Mbps at a 1m free space distance was obtained. The resulting bit-error-rate was $7.6{\times}10^{-4}$, which is less than the forward error correction (FEC) limit of $3.8{\times}10^{-3}$.

Optical Properties of Sea Water in the Western Channel of the Korea Strait (대한해협에서의 해수의 광학적 성질)

  • YANG Yong-Rhim
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.15 no.2
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    • pp.171-177
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    • 1982
  • Optical properties of sea water were studied in the western channel of the Korea Strait, based on the data obtained from fifteen oceanographic stations in July, 1980. Submarine daylight intensity was measured at intervals of 5m depth in the upper 70m layer by using the underwater irradiameter (Kahlsico $\#268_{WA}360$). The mean absorption coefficients of the sea water were shown as $0.098(0.063\sim0.183),\;0.129(0.090\sim0.270), 0.081(0.044\sim0.142),\;and 0.087(0.036\sim0,142)$ for clear, red, green, and blue color respectively. The transparency ranged from 11.5 to 24m(mean 18.3m). The mean water color in this area was $3.5(3\sim4)$ in Forel scales. The relation between absorption coefficient $(\kappa)$ and transparency (D) was $\kappa=1.72/D,\;\kappa=2.33/D,\;\kappa=1.41/D,\;and \kappa=1.44/D$ for clear, red, green, and blue color respectively. The rates of light penetration for clear, red, green, and blue color in four different depths were computed with reference to the surface light intensity respectively. The mean rates of light penetration in proportion to depths were as follows; clear : $57.90\% (5m),\;23.40\%\;(15m),\;6.23\%\;(30m),\;1.00\%\;(50m).$ $red\;:\;48.95\%\;(5m),\;14,81\%\;(15m),\;2.76\%\;(30m),\;0.28\%\;(50m).$ $green:\;63.20\%\;(5m),\;30.47\%\;(15m),\;10.03\%\;(30m),\;2.24\%\;(50m).$ $blue\;:\;62.70\%\;(5m),\;30.00\%\;(15m),\;9.75\%\;(30m),\;1.70\%\;(50m)$

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