• 제목/요약/키워드: Axial Paths

검색결과 44건 처리시간 0.018초

Development of an Alignment Method for Retarders in isoSTED Microscopy

  • Ilkyu Park;Dong-Ryoung Lee
    • Current Optics and Photonics
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    • 제8권4호
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    • pp.421-426
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    • 2024
  • The use of stimulated emission depletion (STED) microscopy has significantly improved resolution beyond the limits imposed by diffraction; Furthermore, STED microscopy adopts a 4Pi-geometry to achieve an isotropic improvement in resolution. In isoSTED microscopy, a polarizing beam splitter and retarders are used in a 4Pi cavity to split beams of identical power, generating constructive and destructive interference for lateral and axial resolution improvements, respectively. The precise alignment of the retarders is crucial for optimizing the performance of isoSTED microscopy, because this orientation affects the quality of the depletion focus, necessitating zero intensity at the center. Incomplete destructive interference can lead to unwanted fluorescence inhibition, resulting in degraded resolution and contrast. However, measuring the intensity and polarization state in each optical path of the 4Pi cavity is complex and requires additional devices such as a power meter. Here, we propose a simple and accurate alignment method for the 4Pi cavity in isoSTED microscopy. Our approach demonstrates the equal allocation of power between upper and lower beam paths and achieves complete destructive interference using a polarizing beam displacer and a single CCD camera positioned outside the 4Pi cavity.

서울 금호동 오픈스페이스 네트워크 계획 (Network Planning on the Open Spaces in Geumho-dong, Seoul)

  • 강연주;배정한
    • 한국조경학회지
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    • 제40권5호
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    • pp.51-62
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    • 2012
  • 서울 금호동은 응봉의 산자락에 위치한 재개발 주거지역으로, 지형적 문제와 대규모 아파트단지의 조성, 부분적인 재개발사업의 시행 등 다양한 원인에 의해 주민들의 물리적, 사회적 단절이 심각한 곳이다. 본 연구는 이러한 금호동의 단절된 커뮤니티를 회복하기 위한 방안으로, 일상적 장소인 오픈스페이스의 기능과 이의 원활한 네트워크의 가능성에 주목하고자 한다. 연구를 위하여 우선 다양한 유형의 오픈스페이스를 점 또는 면적인 '거점'과 선적인 '통로'로 단순화하여 구분하고, 전체적인 맥락에서 네트워크 현황을 분석하였다. 분석 결과, 거점과 통로의 연결거리가 500m 이상인 구간이 전체의 반수 이상을 차지했으며, 유치권 안에 포함되지 않은 지역도 다수 나타났다. 축선도에 의한 연결도와 통합도 분석을 통해 연계가 취약한 구간을 점검하였으며, 추가로 거점이 필요한 구간도 산정하였다. 또한 거점과 통로의 질을 개선하기 위해 현장 조사를 실시, 문제점을 진단하고 해결 가능성을 검토하였다. 이상의 분석 결과들을 바탕으로 거점과 통로의 수적, 질적인 확보를 위한 금호동의 오픈스페이스 네트워크 계획을 수립하였다. 대상지 중심부에 주요 거점을 추가하고 6개의 보조 거점도 신규로 설치하였으며, 낙후된 보조 거점의 환경을 개선할 수 있는 방안을 마련하였다. 또한 연계가 힘든 대현산지역 근린공원 주변에 연결 통로를 확보하여 주요 통로로 기능하게 하고, 일부 구간을 중심으로 통로의 환경이 개선되도록 하였다. 네트워크 계획의 결과, 연결거리는 상당부분 줄어들었고, 연결도와 통합도는 증가하였으며, 유치권도 적절하게 확보될 수 있었다. 본 연구는 네트워크를 위한 법적, 제도적 뒷받침과 정량적인 지표화 과정 등의 한계점을 가지나, 복잡한 오픈스페이스의 유형을 단순하고 명확하게 정립하고, 이의 유기적인 관계를 정량적, 정성적으로 조명함으로써 전체적인 네트워크 구축을 위한 보다 합리적이고 실질적인 계획 방향을 제안하였다는 점에 그 의의를 갖는다.

임펠러 5축 NC가공을 위한 가공전략수립 지원시스템 (A 5-Axis NC Machining Strategy Support System for an Impeller)

  • 조민호;김동원;허은영;이찬기
    • 산업공학
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    • 제21권4호
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    • pp.411-417
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    • 2008
  • An impeller is a type of high-speed rotor that is used to compress or transfer fluid under high-speed and pressure at high temperatures. The impeller is composed of an axial hub and several blades attached along the hub. The weight and shape of an impeller must be balanced, because their imbalances can cause noise and vibration, which can lead to the breakage of the impeller blades during operation. Thus, the hub and blades of an impeller are commonly machined in a 5-axis NC machine to obtain qualified surfaces. The impeller machining strategy or process plan can not be easily obtained due to the complex, overlapped and twisted shapes of impeller blades. Skillful machining process planners may generate appropriate machining strategies based on their experiences and floor data. However, in practice most shop floor data for the impeller machining is not well-structured such that it does not effectively provide a process planner with information for machining strategies and/or process plans. This paper reports the development of a case-based machining strategy support system (CBMS) that employs case-based reasoning to obtain the machining strategy of an impeller by using the existing machining strategies of the shop floor. The CBMS generates impeller machining strategies through a stepwise reasoning process considering the similarity features between the blade shapes and machining regions. A case study is provided to demonstrate that CBMS can generate useful machining strategies facilitating process planners. The developed system can simulate the tool paths of impeller machining and runs on the web.

남한(南韓)의 형석광상(螢石鑛床)의 성인(成因)에 관(關)한 연구(硏究) (A Study on the Genesis of Fluorite Deposits of South Korea)

  • 지정만
    • 자원환경지질
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    • 제8권1호
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    • pp.25-56
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    • 1975
  • Most fluorite deposits of South Korea are distributed in three metallogenic zones namly as: Hwacheon, Hwangangni and Geumsan metallogenic zones. Fluorite deposits of each zone show The characteristic features owing to the geological setting, the structural patterns and their forming processes. deposits of the Hwacheon metallogenic zone are wholly fissure filling hydrothermal veins emThe bedded in shear fractures of the granite gneiss or schists of Precambrian age or in the cooling fractures of the granite and acidic hypabyssal rocks which are assumed to be a differentiated sister rock of the granite. Localization of most fluorite veins of the region is structurally controlled by NW and EW fracture systems and genetically related to the granite intrusion which ascertained as motivating rock of the fluorite mineralization. Fluorites are in most cases accompanied by quartz, chalcedony mainly and rarely agate, calcite, barite and sulphide base metals in some localities. The deposits of the Hwangangni metallogenic zone were formed at the last stage of hydrothermal polymineralization of W, Mo, Cu, Pb, Zn. The majority of the fluorite ore bodies were originated from replacement in limestone beds of Great Limestone Series or in calcareous interbeds of metasediments, whereas some cavity-filling ore bodies were embedded in phyllites and schists of the Ockcheon system and along the fissures in the replaced beds which were originated by volume decrease. The localization of fluorite deposits in this region is genetically related to the Moongyong granite which has been dated as middle Cretaceous, and controlled structurally by the $N20^{\circ}{\sim}50^{\circ}W$ extension fracture system or axial planes of folds, and by faults of NE direction that acted as paths of ore solution. The deposits of the Geumsan metallogenic zone are seemed to be formed through the similar process as that of Hwangangni metallogenic zone, but characteristic distinctions are in that they are more prevailing fracture filling veins and large number of the deposits are localized in roof-pendants or xenolithes of limestone in granites and porphyries. Igneous rocks that presumably motivated the mineraltzation are middle Cretaceous Geumsan granite and porphyries. Metallogenic epoch of the fluorite mineralization of South Korea are puesumably limited in early-middle Cretaceous. Studies of the fluid inclusions in fluorites of the region reveal that the homogenization temperature of the fluorite deposits are as follows: Hwacheon metallogenic zone : $95^{\circ}C{\sim}165^{\circ}C$; Hwangangni metallogenic zone : $97^{\circ}C{\sim}235^{\circ}C$; Geumsan metallogenic zone : $93^{\circ}C{\sim}236^{\circ}C$. Judging from the above results, the deposits of the Hwancheon region were formed at the epithermal stage, and those in the Hwangangni and Geumsan regions, were deposited at epithermal stage preceded by mesothermal mineralization of small scale in which some sulphide minerals were deposited. The analytical data of minor elements in the fluorites reveal that ore solutions of Hwangangni metallogenic zone seemed to be emanated in more acidic stage of magma differentiation than Hwacheon metallogenic zone did.

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