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안진수,김길환,이관일,이경식,이상배,Ahn, Jin-Soo,Kim, Gil-Hwan,Lee, Kwan-Il,Lee, Kyung-Shik,Lee, Sang-Bae 한국광학회 2010 한국광학회지 Vol.21 No.5
본 논문에서는 포토닉 밴드갭 광섬유(Photonic Bandgap Fiber: PBGF) 사이에 중공광섬유(Hollow Optical Fiber: HOF)를 융착 접속시켜 만든 광섬유 간섭계와 넓은 모드 면적을 가지는 광자결정 광섬유(Large Mode Area-Photonic Crystal Fiber: LMA-PCF)사이에 HOF를 융착접속시켜 만든 광섬유 간섭계의 온도 및 스트레인에 대한 광학적 특성을 분석하였다. PBGF 또는 LMA-PCF와 HOF의 융착접속시 광섬유내 공기구멍을 최대한 유지하도록 융착조건을 최적화하여 접속 손실을 줄였다. PBGF와 HOF로 구성된 광섬유 간섭계의 온도 및 스트레인에 대한 민감도는 각각 15.4 pm/$^{\circ}C$와 0.24 pm/${\mu}\varepsilon$으로 측정되었으며, LMA-PCF와 HOF로 구성된 광섬유 간섭계의 온도 및 스트레인에 대한 민감도는 각각 17.4 pm/$^{\circ}C$와 0.2 pm/${\mu}\varepsilon$으로 측정되었다. We report temperature and strain sensing characteristics of two kinds of in-line fiber interferometers. One interferometer consists of a section of Hollow Optical Fiber(HOF) spliced between two Photonic Bandgap Fibers(PBGF) and the other is built by splicing a section of HOF between two Large Mode Area-Photonic Crystal Fibers(LMA-PCF). To minimize the splice losses, we carefully optimized the heating time and arc current of the splicer so as not to collapse the air holes of the fiber. It is found that the first interferometer has a temperature sensitivity of 15.4 pm/$^{\circ}C$ and a strain sensitivity of 0.24 pm/${\mu}\varepsilon$. The other interferometer exhibits a temperature sensitivity of 17.4 pm/$^{\circ}C$ and a strain sensitivity of 0.2 pm/${\mu}\varepsilon$.
안진수(Jin-Soo Ahn) 대한치과의사협회 2013 대한치과의사협회지 Vol.51 No.1
Esthetic aspect is one of the most important factors in clinical dentistry. Esthetics of dental restorative materials consist of translucency, surface texture, and most importantly "colour". Main characteristics of optical properties and its clinical representation and general outlook as to the current information on colour and its representation has been considered in this study. Characteristics of esthetic materials are concerned with the field of science and dental professionals should take into consideration the importance, characteristics, and applications to actual clinical settings of esthetic restorative materials. Relevant information regarding natural teeth and esthetic restorative materials and training will lead to the heightened ability of dental professionals.
안진수(Jin Soo Ahn),박광노(Kwang No Park),김길환(Gil Hwan Kim),이상배(Sang Bae Lee),이경식(Kyung Shik Lee) 대한전자공학회 2009 電子工學會論文誌-SD (Semiconductor and devices) Vol.46 No.7
단일모드 광섬유(SMF)와 포토닉 밴드갭 광섬유(PBGF), SMF와 고비선형 광자결정 광섬유(NL-PCF)의 저손실 융착접속을 위한 방법을 제안하였다. SMF와 PBGF를 융착접속할 경우 PBGF의 공기구멍 붕괴현상에 의한 손실이 가장 큰 영향을 미치므로 PBGF의 공기구멍을 유지시키기 위해서 광섬유 융착접속기를 최적화하여 접속손실을 1.22 ㏈이하로 줄였다. SMF와 NL-PCF의 융착접속시에는 Ultra High Numerical Aperture(UHNA)광섬유를 두 광섬유 사이에 삽입하여 융착접속하는 방법을 적용하여 평균 2.59 ㏈이하로 접속손실을 줄였다. We proposed a fusion splicing method for low splicing loss between a single-mode fiber(SMF) and two different photonic crystal fibers(PCFs) such as a photonic bandgap fiber(PBGF) and highly nonlinear photonic crystal fiber(NL-PCF). The splicing loss between the SMF and PBGF is affected by air-hole collapse. Therefore, we optimized fusion splicer and reduced a splicing loss below 1.22 ㏈. We also inserted a Ultra High Numerical Aperture(UHNA) fiber between the SMF and NL-PCF to achieve a splicing loss of below 2.59 ㏈.