• 제목/요약/키워드: Dome size

검색결과 86건 처리시간 0.021초

AFM을 이용한 Si (001) 표면에 Ge 나노점의 형성과 성장과정에 관한 연구 (Study on Nucleation and Evolution Process of Ge Nano-islands on Si(001) Using Atomic Force Microscopy)

  • 박정식;이상현;최명섭;송덕수;이성수;곽동욱;김도형;양우철
    • 한국진공학회지
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    • 제17권3호
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    • pp.226-233
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    • 2008
  • 본 연구는 화학기상증착(Chemical Vapor Deposition)법을 이용하여 Si(100) 표면위에 Ge 나노점을 성장하여 나노점의 형성과 성장과정을 원자간력현미경(AFM)으로 조사하였다. 성장온도, Ge 증착량, 열처리시간의 변화에 따른 형성된 나노점의 모양, 크기, 표면 밀도의 변화를 분석하였다. $600^{\circ}C$의 성장온도에서 ${\sim}0.1ML/sec$의 증착율로 Ge을 증착한 결과, ${\sim}4ML$까지는 pseudomorphic한 Ge wetting 층이 형성되었으며, 증착시간을 증가하여 5ML 이상에서 Ge 나노점이 형성되기 시작하였다. Ge 증착량을 증가시킴에 따라 초기 나노점은 긴 지붕모양(elongated hut)구조로 형성되었고, 점차 크기가 증가함에 따라, 피라미드(pyramid), 돔(dome), 더 큰 Superdome 구조로 변형되었다. 초기 피라미드 형태의 나노점 평균크기는 ${\sim}20nm$이였으며, 가장 큰 superdome의 평균크기는 ${\sim}310nm$ 이상이었으며, 크기가 증가함에 따라 표면 밀도는 $4{\times}10^{10}cm^{-2}$에서 $5{\times}10^8cm^{-2}$로 감소하였다. 상대적으로 고온인 $650^{\circ}C$에서 Ge을 증착했을 경우, 피라미드 구조는 발견되지 않았으며, 대부분의 나노점은 돔 형태로 형성되었으며, 점차 superdome 형태로 변형되었다. 또한, 고온 성장된 시료의 열처리 시간을 증가함에 따라, 나노점의 크기는 점차 성장하였으나, 밀도는 거의 변화가 없었다. 이와 같은 나노점의 형태, 크기, 밀도의 변화는 나노점이 갖는 에너지의 최소화와 표면에서 원자들의 이동(diffusion)으로 설명할 수 있었다. 특히, AFM 이미지의 표면에 분포한 나노점들의 상대적인 위치를 분석한 결과, 유사한 크기의 근접한 나노점들은 점차 크기가 증가함에 따라 합쳐지는 Coalescence과정에 의해 성장하고, 크기가 다른 근접한 나노점들 사이에는 화학적 포텐셜에너지 차에 의한 ripening 과정의 성장을 관찰하였다. 즉, 형성된 나노점들은 국부적인 표면분포에 따라 나노점들은 두 성장과정이 동시 작용하여 성장함을 확인하였다.

간원개에 위치한 종양에 대한 Anisotropic Analyticalal Algorithm과 Pencil Beam Convolution 알고리즘에 따른 전달선량 비교 (Comparison of Dose Distributions Calculated by Anisotropic Analytical Algorithm and Pencil Beam Convolution Algorithm at Tumors Located in Liver Dome Site)

  • 박병도;정상훈;박성호;곽정원;김종훈;윤상민;안승도
    • 한국의학물리학회지:의학물리
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    • 제23권2호
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    • pp.106-113
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    • 2012
  • 본 연구에서는 종양이 간원개에 위치한 환자들을 대상으로 Eclipse 치료계획시스템(treatment planning system V8.9 : TPS, Varian)에서 쓰이는 두 종류의 선량계산 알고리즘(pencil beam convolution : PBC, anisotropic Analytical algorithm : AAA)들을 적용하여 육안적종양체적(gross tumor volume : GTV), 내부표적체적(internal target volume : ITV), 계획용표적체적(planning target volume : PTV) 및 주요 관심장기에 전달되는 선량의 변화를 정량적으로 평가하고, 선량분포에 영향을 미칠 수 있는 인자들을 분석하고자 하였다. 본원에서 치료받은 간암환자 20명을 대상으로 하였고 그 중 10명의 환자들에 대해서는 정위적 방사선치료(stereotactic body radiation therapy : SBRT) 기술을 적용, 다른 10명의 환자들에 대해서는 3차원 입체조형 방사선치료(three-dimensional conformal radiation therapy : 3DCRT) 기술을 적용하여 치료하였다. 조사선량은 우선적으로 PBC 알고리즘을 적용하여 선량계산을 하였고 동일한 빔 정렬 및 콜리메이터(Collimator), Monitor Unit (MU) 그리고 Field 가중치를 적용시켜서 AAA 선량계산법으로 다시 계산 한 후, 두 알고리즘에 대한 처방선량 100%에 해당하는 체적(V100)의 lesion coverage factor (CVF) 들을 비교하였다. SBRT 기술을 이용한 환자들의 치료계획에서 전체 PTV에 대한 CVF의 경우, 두 선량계산 알고리즘사이 통계학적으로 유의한 상관관계(p=0.018)를 보였다. 또한, 3DCRT 기술을 이용한 환자들의 치료계획에서는 전체 PTV (p=0.006), 간원개에 위치한 PTV (p=0.013), 전체 ITV (p=0.024)에 대하여 각각 통계학적으로 유의한 상관관계를 보였다. 복부에 위치한 주요 관심장기에 대하여 SBRT 기술을 이용한 환자들의 치료계획에서 정상 간과 신장에 조사되는 최대선량에 대하여 통계학적으로 각각 유의한 상관관계(정상간: p=0.009, 신장: p=0.037)를 보였다. 본 연구에서 선택한 선량변화 예측인자들에 대하여 대응표본 T-검정(paired T-test)을 시행한 결과, 전체 PTV에 대한 간원개에만 위치하는 PTV의 비율($PTV_{dome}$/PTV)과 두 알고리즘에 의한 CVF 비율의 상관관계에 있어서 통계학적으로 유의미한 상관관계를 보였다(p<0.01). 또한, 종양의 크기에 대한 두 알고리즘의 CVF 비율에 있어서 통계학적으로 의미가 있는 상관관계를 보였다(SRS환자 p=0.017, 3DCRT환자 p=0.023). 본 연구에서는 15MV x-ray beam으로 선량을 계산할 때 PBC와 AAA간의 선량계산 차이를 분석하여 선택한 선량변화 예측인자 중 간원개에 위치한 종양의 크기와 계획용 표적체적에 대한 관계성을 알아내었다. 일반적으로 15MV x-ray beam에 의한 선량분포를 정확하게 알아내는 것은 AAA으로도 불충분하다는 것이 일반적인 사실로 받아들여지고 있어 이를 AAA와 PBC간의 차이로 그 정확성을 간접적으로 유추하여 실질적인 선량분포에 대한 치료계획단계에서의 선량분포의 차이의 경향성을 보고자 하였다.

Morphological Description of Three Anaerobic Ciliates Unrecorded in Korea

  • Quoc Dung Nguyen;Novia Cahyani;Mann Kyoon Shin
    • Animal Systematics, Evolution and Diversity
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    • 제40권3호
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    • pp.211-220
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    • 2024
  • During the surveys of ciliates from hypoxic habitats, three marine anaerobic species were found: Metopus spiculatus, M. vestitus, and Muranothrix felix. These species have not been previously recorded in South Korea and belong to the taxonomic classes Armophorea and Muranotrichea. The morphology of these species was examined by both microscopic observations of live specimens, and stained cells using protargol impregnations. Metopus spiculatus has the following characteristics: body size 80-110×25-35 ㎛ in vivo, beak-like structure at the end of preoral dome, ectosymbiotic bacteria covering cell surface, intracytoplasmic needle-shaped structures and the conspicuous tail end. Metopus vestitus has the following distinguishing characteristics: body size 95-130×25-45 ㎛ in vivo, a cone-shaped body, a covering of ectosymbiotic bacteria on its cell surface, intracytoplasmic needleshaped structures, somatic kineties arranged in 26-28 longitudinal rows, and a posterior part tapered into a tail. Muranothrix felix has the following characteristics: body size 100-130×20-30 ㎛ in vivo, elongated body with twisted neck region, bristle-like cilia protruding perpendicular to the cell margin, ectosymbiotic bacteria covering the cell surface, about 10 macronuclear nodules, and a long, stiffened caudal cilium.

대형강괴 업셋팅공정의 기공압착 해석 (Analysis of Void Closure in the Upsetting Process of Large-Ingot)

  • 박치용;조종래;양동열;김동진;박일수
    • 대한기계학회논문집
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    • 제16권10호
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    • pp.1877-1889
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    • 1992
  • 본 연구에서는 업셋팅의 변형해석 및 온도해석(열전달 해석)을 비연계 방식으 로 동시에 해석하고 실제 공정에 가깝게 접근하는 축대칭 열점소성 유한요소 프로그램 을 이용하여, 시뮬레이션에 의해 공정을 해석하여 불량감소 및 원가절감을 위해 단조 공정을 개선하는 것이다. 업셋팅공정의 연구에 있어서는 대형강괴의 주 불량요인인 기공의 소멸을 위한 공정방안을 연구하는데 있다.

DEVELOPMENT OF THE SNU COELOSTAT: CONCEPTUAL DESIGN

  • Kang, Juhyung;Chae, Jongchul;Kwak, Hannah;Yang, Heesu
    • 천문학회지
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    • 제51권6호
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    • pp.207-214
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    • 2018
  • A coelostat is often used for solar observations, because it corrects the image rotation automatically by guiding sunlight into a fixed telescope with two plane mirrors. For the purposes of education and spectroscopic observation, the solar group at Seoul National University (SNU) plans to develop the SNU coelostat (SNUC) and install it in the SNU Astronomical Observatory (SAO). Requirements of the SNUC are < 1" positioning accuracy with 30 cm beam size on the entrance pupil in the compact dome. To allow for installation in the small dome, we design a compact slope type coelostat with a 45 cm primary plane mirror and a 39 cm secondary plane mirror. The motion of the SNUC is minimized by fixing the position of the slope frame. Numerical simulations of the available observational time of the designed coelostat shows that the sun can be observed ay all times from June to early August and at least three hours in other months. Since the high accuracy driving motors installed in the SNUC can be affected by external environment factors such as humidity and temperature variations, we design a prototype to test the significance of these effects. The prototype consists of a 20 cm primary plane mirror, a 1 m slope rail, a direct drive motor, a ballscrew, a linear motion guide, an AC servo motor, a reduction gear and a linear encoder. We plan to control and test the accuracy of the prototype with varying atmospheric conditions in early 2019. After testing the prototype, the SNUC will be manufactured and installed in SAO by 2020.

Stereoscopic PIV 속도장 측정기법을 이용한 액체 램제트 연소기에서의 2차 재순환 유동장 특성 (Secondary Flow Characteristics in a Liquid Ramjet Combustor Using Stereoscopic PIV)

  • 김석주;손창현
    • 한국가시화정보학회지
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    • 제3권1호
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    • pp.58-62
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    • 2005
  • Flow characteristics at secondary recirculation zone in a liquid fuel ramjet combustor were investigated using CFD and Stereoscopic PIV method. The combustors have two rectangular inlets that form 90 degree each other. Three guide vanes were installed in each rectangular inlet to improve the flow stability. The tested angle of the air intakes was 60 degree. The experiments were performed in the water tunnel test with the same Reynolds number in the case of Mach 0.3 at inlet. The computational and experimental results showed that the secondary recirculation flow occurred at the front junction of inlet main stream and combustor chamber. The size of secondary recirculation regions are increased with approaching closer to the center of the combustor. Since the performance of combustor is closely dependent not only on the main recirculation in the dome region but also on the secondary recirculation flow in a junction region, the optimal angle of the air intakes should be considered the recirculation size as frame holder.

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Stereoscopic PIV 속도장 측정기법을 이용한 액체 램제트 연소기에서의 2차 재순환 유동장 측정 (Flow Characteristics of secondary recirculation region for using Stereoscopic PIV in a Liquid Fuel Ramjet Combustor)

  • 김석주;최종하;박철우;손창현
    • 한국가시화정보학회:학술대회논문집
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    • 한국가시화정보학회 2003년도 추계학술대회 논문집
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    • pp.115-120
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    • 2003
  • Flow characteristics at secondary recirculation zone in a liquid fuel ramjet combustor are investigated using CFD and 3-D Stereoscopic PIV method. The combustors have two rectangular inlets that form 90 degree each other. Three guide vanes were installed in each rectangular inlet to improve the flow stability. The tested angle of the air intakes was 60 degree. The experiments were performed in the water tunnel test with the same Reynolds number in the case of Mach0.3 at inlet. Both computational and experimental results showed the secondary recirculation flow occurred at the front junction of inlet main stream and combustor chamber. The size of secondary recirculation region increased with upon closer center of axial combustor. Since the performance of combustor depends on not only the main recirculation in the dome region but also the secondary recirculation flow in a junction region, the optimal angle of the air intakes should consider the recirculation size as frame holder.

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Numerical analysis of particle transport in low-pressure, low-temperature plasma environment

  • Kim, Heon Chang
    • 한국입자에어로졸학회지
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    • 제5권3호
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    • pp.123-131
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    • 2009
  • This paper presents simulation results of particle transport in low-pressure, low-temperature plasma environment. The size dependent transport of particles in the plasma is investigated with a two-dimensional simulation tool developed in-house for plasma chamber analysis and design. The plasma model consists of the first two and three moments of the Boltzmann equation for ion and electron fluids respectively, coupled to Poisson's equation for the self-consistent electric field. The particle transport model takes into account all important factors, such as gravitational, electrostatic, ion drag, neutral drag and Brownian forces, affecting the motion of particles in the plasma environment. The particle transport model coupled with both neutral fluid and plasma models is simulated through a Lagrangian approach tracking the individual trajectory of each particle by taking a force balance on the particle. The size dependant trap locations of particles ranging from a few nm to a few ${\mu}m$ are identified in both electropositive and electronegative plasmas. The simulation results show that particles are trapped at locations where the forces acting on them balance. While fine particles tend to be trapped in the bulk, large particles accumulate near bottom sheath boundaries and around material interfaces, such as wafer and electrode edges where a sudden change in electric field occurs. Overall, small particles form a "dome" shape around the center of the plasma reactor and are also trapped in a "ring" near the radial sheath boundaries, while larger particles accumulate only in the "ring". These simulation results are qualitatively in good agreement with experimental observation.

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다중 모드 SPM을 이용한 덴드리머의 모폴로지 특성에 대한 연구 (Study on Morphological Properties of Dendrimer Using Multi-Mode SPM)

  • 정경한;신훈규;김정균;권영수
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2003년도 추계학술대회 논문집 Vol.16
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    • pp.192-195
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    • 2003
  • There has been increasing interest in the applications of synthesized molecules of nanometer scale in recent years due to their potential utilization in various fields such as biology, optoelectronics and molecular electronics. In this study, the terpyridine-platinum (II) complex on the periphery of the dendritic carbosilane has been prepared from the reaction of Pt(COD)Cl2 and the 4'-functionalized-(2,2':6',2"-terpyridine) on dendrimers. The self-assembly process was carried out to obtain indivially dispersed dendrimer on Au (111) substrate. It was found that STM was unsuitable to obtain a obvious image of dendrimers. Tapping-mode atomic force microscopy(AFM) has been used to investigate the shape and size of dendrimers individually dispersed on Au (111)substrate. As a result, the imaged single dendrimer show that dendrimer is dome shaped and its size can be measured by tapping-mode AFM.

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액체 램젯트 엔진 연소기내의 이차유동 특성 (Flow Characteristics of Secondary Recirculation Region in a Liquid Ramjet Combustor)

  • C. H. Sohn;J. S. Hong;S. Y. Moon;C. W. Lee
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2003년도 제20회 춘계학술대회 논문집
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    • pp.137-140
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    • 2003
  • The flow characteristics of secondary recirculation region in a liquid fuel ramjet combustor are measured using PIV method. The model combustor has two rectangular inlets that form 90 degree angle each other. The tested angles of the air intakes were 30, 45 and 60. Three guide vanes are installed in each rectangular inlet to improve the flow stability. The experiments are performed in the water tunnel test with the same Reynolds number as the case of Mach 0.3 at the inlet. PIV software is developed to measure the characteristics of the flow field in the combustor. The accuracy of the developed PIV program is verified with rotating disk experiment and standard data. The experimental results show that the secondary recirculation flow occurred at the front junction of inlet main stream and combustorchamber. The size of secondary recirculation regions are increased with increasing air inlet angles. Since the performanceof combustor is very dependant on not only the main recirculation in the dome region but also the secondary recirculation flow in a junction region, the optimal angle of the air intakes should consider the both recirculation size as a frame holder.

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