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크기가 다른 전극폭을 갖는 4분기 광도파로형 열광학스위치
송현채,이태형,신상영,Song, Hyun-Chae,Rhee Tae-Hyung,Shin, Sang-Yung 대한전자공학회 2000 電子工學會論文誌-SD (Semiconductor and devices) Vol.37 No.6
다분기 열광학 스위치는 수위칭 상태에 딸 요구되는 소비전력의 차이가 큰 단점이 있다. 이를 개선하는 방법으로 전극형태에서 외측전극폭을 내측전극폭에 비해 크게 설계하고 굴절률차이가 큰 코아와 클래드 물질을 사용하여 상부클래드의 두께를 얇게 하는 방법을 제안한다. 제안된 형태의 4분기 열광학스위치는 테플론과 폴리이미드계 폴리머 물질을 사용하여 제작되었고 1550 nm 파장대에서 그 특성을 측정하였다. 제작되어진 4분기 열광학스위치는 310~390 mW 정도의 소비전력에서 -16 dB 이하의 누호 특성을 나타 내어 스위칭 상태에 따른 소비전력의 차가 줄었을 뿐만 아니라 스위칭에 필요한 소비전력도 상당히 줄었다. 그리고 4.7 dB 정도의 삽입손실과 1 ms 이하의 스위칭 속도를 얻었다. A multi-branch thermo-optic switch has a problem that driving powers in the switching states are different from each other; the power consumption for the inner output port is more than twice as large as that form the outer output port. In this pater, to solve this problem unequal width heaters and the waveguide structure with a thin overcladding layer are proposed in a four-branch thermo-optic switch. The proposed structure is fabricated with the polymer materials with high index difference, Teflon and polyimides. The fabricated device was measured at the wavelength of 1550 nm. The measured characteristics exhibit the smaller difference in the power consumption between the switching states and the driving power les than the previous four-branch thermo-optic switch with equal width heaters. As for the device performance, the crosstalk is better than - 16 dB at about 310 ~ 390 mW, the insertion loss is 4.7 dB, and the switching time is less than 1 ms.
송현채,오태원,신상영,이상윤,장우혁,이태형 대한전자공학회 1998 電子工學會論文誌, D Vol.d35 No.7
A new 1*4 optical waveguide power divider is proposed and fabricated. It consists of a 1*4 multi-branch structure with a beam separator and two beam expanders that can control the splitting ratios between the output ports. The proposed optical waveguide power divider is designed by employing the two dimensional finite difference beam propagation method and is fabricated by a reactive ion etching method. The splitting ratio of fabricatd device is 25.0 : 25.7 : 25.3 : 24.0 for TE mode and 25.7 : 25.2 : 24.1 : 25.0 for TM mode. Comapred with the conventional Y-branch structure, the proposed structure shortens the length of a 1*N divider by the factor 3. Thus it reduces the total propagation loss and the total radiation loss at the branch points. furthermore, the splitting ratios between the output ports may be controlled in this structure for some special applications.
다중모드간섭 현상에 입각한 1*4 폴리머 광파워분할기의 제작
김기홍,송현채,오태원,신상영,이운영 대한전자공학회 1998 電子工學會論文誌, D Vol.d35 No.11
다중모드간섭 현상에 입각한 1 4 폴리머 광파워분할기를 설계, 제작하였다. 이 광파워분할기는 2차원 유한차분 빔전파방법을 사용하여 설계하였다. 코어와 클래딩 물질로 각각 Cyclotene-3022과 UV-15이 사용되었고, 반응이온식각 공정에 의해 제작되었다. 제작된 1 4 광파워분할기의 각 출구에서의 측정된 광출력비는 TE모드에서 0.93 : 1.00 : 0.93 : 0.90, TM모드에서 0.84 : 0.94 : 1.00 : 0.83 이었다. 다중모드간섭 현상을 이용한 1 4 광파워분할기는 소자의 길이가 작고, 편광에 따른 의존도가 작은 장점이 있다. A 1 4 polymeric optical power divider based on the multimode interference effect is designed and fabricated. The two dimensional finite difference beam propagation method has been utilized in designing the device. Polymers used for the core layer and the cladding layer are Cyclotene-3022 and UV-15, respectively. The device is fabricated by the reactive ion etching method. The splitting ratio of the fabricated device is 0.93 : 1.00 : 0.93 : 0.90 for TE mode and 0.84 : 0.94 : 1.00 : 0.83 for TM mode. The advantages of this device are small size and low polarization-dependence.
황토, 갯벌 및 머드의 중금속 흡착율에 관한 실험적 연구
이인숙(l.S.Lee),이미영(M.Y.Lee),이택중(T.J.Lee),김현정(H.J.Kim),이병창(B.C.Lee),정명상(M.S.Jeong),방은옥(E.O.Bang),송현실(H.S.Song),황혜경(H.K.Hwang),이중호(J.H.Lee),조영채(Y.C.Cho) 대한환경위생공학회 2004 대한환경위생공학회지 Vol.19 No.2
Yellow loess, Tidal plat sediment, and mud are known to be high in adsorption though they have great distinction according to the ratio of clay minerals content and their kinds. Thus one of the samples for this study can be obtained by drying of Yellow loess, Tidal plat sediment, and the mud which is semifinished products that are from the progress of heat treatment and making homogeneity which can be found everywhere in our country. Another sample can be prepared by reducing pollutants with the adsorbent and by burning heavy metals of their own. With the samples, noxious heavy metals such as Pb, Cd, and essential trace elements such as Cu, Fe, Mn by each concentration is tested for adsorption according to pH, the kinds of adsorbents and the amount of injection. With the help of these steps, this study shows that the adsorbents, which are green, reducing the additional pollution and low in price, can be found. It also shows that the optimal condition for removing pollutants can be found and the basic materials for treating water can be offered. The results were as follows;<br/> Yellow loess shows the rates of adsorption by more than 50% and Tidal plat sediment and Mud show it by more than 90%. Thus Tidal plat sediment and Mud are higher than Yellow loess the rates of adsorption.<br/> The pH should be treated in natural condition because the rates of adsorption of Pb, Cd, Cu, Mn excepting Fe in mud is higher in pH 7 than in pH 3 of Yellow loess, Tidal plat sediment, and Mud.<br/> The drying adsorbents are good to use because the rates of adsorption of heavy metals has tendency to be higher in the drying method than in the burning method.<br/> It is considered that the more the amount of the injection of the adsorbent is , the higher the rates of adsorption is, and one gram is reasonable for the amount of the injection of Tidal plat sediment and mud.<br/> Yellow loess is suitable for the treatment of the water that includes low concentration of heavy metals because it has the lower rate of adsorption as the concentration of noxious heavy metals is higher.<br/> It is thought that Tidal plat sediment and Mud is proper for the treatment of the water that includes high concentration of heavy metals because the rates of adsorption has not been changed as the concentration of heavy metals increases.