• Title/Summary/Keyword: Limit Resolution

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Challenges in the development of the ultrafast electron microscope (초고속 전자 현미경의 개발과 극복 과제)

  • Park, Doo Jae
    • Vacuum Magazine
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    • v.2 no.1
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    • pp.17-20
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    • 2015
  • In this article, a historical and scientific review on the development of an ultrafast electron microscope is supplied, and the challenges in further improvement of time resolution under sub-picosecond or even sub-femtosecond scale is reviewed. By combining conventional scanning electron microscope and femtosecond laser technique, an ultrafast electron microscope was invented. To overcome its temporal resolution limit which originates from chromatic aberration and Coulomb repulsion between individual electrons, a generation of electron pulse via strong-field photoemission has been investigated thoroughly. Recent studies reveal that the field enhancement and field accumulation associated with the near-field formation at sharply etched metal nanoprobe enabled such field emission by ordinary femtosecond laser irradiation. Moreover, a considerable acceleration reaching 20 eV with near-infrared laser and up to 300 eV acceleration with mid-infrared laser was observed, and the possibility to control the amount of acceleration by varying the incident laser pulse intensity and wavelength. Such findings are noteworthy because of the possibility of realizing a sub-femtosecond, few nanometer imaging of nanostructured sample.in silicon as thermoelectric materials.

Millimeter-wave Fast-sweep FM Reflectometry Applied to Plasma Density Profile Measurements

  • Kang, Wook-Kim
    • Journal of electromagnetic engineering and science
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    • v.1 no.1
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    • pp.18-23
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    • 2001
  • A fast-sweep broadband FM reflectometer system has been successfully developed and operacted at the DIII-D tokamak, producing reliable density Profiles with excellent spatial (1 $\leq$ cm) and temporal resolution (~100 $\mu$ s). The system uses a solid-state microwave oscillator and an active quadrupler, covering full Q-band frequencies (33~50 GHz) and providing relatively high output power (20~60 mW). The system hardware allows fu11band frequency sweep in 10 $\mu$ s, but due to digitization rate limit on DIII-D, sweep time was limited to 75~100 $\mu$ s. Fast frequency sweep has helped to reduce density fluctuation effects on the reflectometer phase measurements, thus improving reliability for individual sweeps. The fast-sweep system with high spatial and temporal resolution has allowed to measure fast-changing edge density profiles during plasma ELMS and L-H transitions, thus enabling fast-time sca1e physics studies.

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Iris Recognition using Multi-Resolution Frequency Analysis and Levenberg-Marquardt Back-Propagation

  • Jeong Yu-Jeong;Choi Gwang-Mi
    • Journal of information and communication convergence engineering
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    • v.2 no.3
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    • pp.177-181
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    • 2004
  • In this paper, we suggest an Iris recognition system with an excellent recognition rate and confidence as an alternative biometric recognition technique that solves the limit in an existing individual discrimination. For its implementation, we extracted coefficients feature values with the wavelet transformation mainly used in the signal processing, and we used neural network to see a recognition rate. However, Scale Conjugate Gradient of nonlinear optimum method mainly used in neural network is not suitable to solve the optimum problem for its slow velocity of convergence. So we intended to enhance the recognition rate by using Levenberg-Marquardt Back-propagation which supplements existing Scale Conjugate Gradient for an implementation of the iris recognition system. We improved convergence velocity, efficiency, and stability by changing properly the size according to both convergence rate of solution and variation rate of variable vector with the implementation of an applied algorithm.

Analytical Characteristics and Applications of Laser Ionization Mass Spectrometry

  • 임훙선;윤하섭;김성규
    • Bulletin of the Korean Chemical Society
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    • v.18 no.1
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    • pp.32-37
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    • 1997
  • We have built a laser ionization mass spectrometer (LIMS) for chemical composition analysis of solid samples, which employs an Nd:YAG laser and a time-of-flight mass analyzer. In this spectrometer, the maximum mass we identified clearly is higher than 2000 amu. A mass resolution of 230 has been achieved at m/z 208 (Pb element) in the linear TOFMS and can be even improved up to 1550 by employing a reflectron. The detection limit is determined to be on the order of ppm for Fe and In. The depth resolution is found to be about 20Å/spectrum with a laser power of 0.5 J/cm2. We also report a preliminary application of the LIMS to identifying impurities resident in several solid samples.

Parallel Generation of NC Tool Paths for Subdivision Surfaces

  • Dai Junfu;Wang Huawei;Qin Kaihuai
    • International Journal of CAD/CAM
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    • v.4 no.1
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    • pp.47-53
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    • 2004
  • The subdivision surface is the limit of recursively refined polyhedral mesh. It is quite intuitive that the multi-resolution feature can be utilized to simplify generation of NC (Numerical Control) tool paths for rough machining. In this paper, a new method of parallel NC tool path generation for subdivision surfaces is presented. The basic idea of the method includes two steps: first, extending G-Buffer to a strip buffer (called S-Buffer) by dividing the working area into strips to generate NC tool paths for objects of large size; second, generating NC tool paths by parallel implementation of S-Buffer based on MPI (Message Passing Interface). Moreover, the recursion depth of the surface can be estimated for a user-specified error tolerance, so we substitute the polyhedral mesh for the limit surface during rough machining. Furthermore, we exploit the locality of S-Buffer and develop a dynamic division and load-balanced strategy to effectively parallelize S-Buffer.

Theory and Application of Near-field Scanning Optical Microscope (광근접장 현미경의 원리 및 응용)

  • 윤형길;이준희;권대갑
    • Journal of the Korean Society for Precision Engineering
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    • v.17 no.6
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    • pp.46-52
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    • 2000
  • 산업사회가 발전하면서 초정밀 분야의 측정기술 또한 시대적 요구에 걸맞게 발전을 거듭하고 있다. 광을 이용한 측정기술에 있어서 보다 작은광 스팟의 구현은 높은 분해능을 위해서 필수 불가결한 조건이며, 광 기록분야에 있어서는 높은 기록밀도를 위해 핵심적인 기술이다. 하지만 스팟의 직경은 광의 회절한계(diffraction limit)에 의한 최소치를 갖는다. 예로서, 측정을 위한 광학 현미경 중 현재 일반적으로 널리 쓰이는 고배율 광학 현미경(high resolution optical microscope)은 측정 대상 표면에 물리적 손상을 주지 않으며, 측정 범위가 크고, 값이 싼 장점이 있다.(중략)

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UNCERTAINTIES IN THE STAR-COUNT ANALYSIS

  • Hong, Seung-Soo;Lee, See-Woo
    • Journal of The Korean Astronomical Society
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    • v.21 no.2
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    • pp.155-171
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    • 1988
  • We have examined how sensitively the extinction value determined by the method of star-count depends on such factors as the plate limit, the size of counting reseau, the non-linearity in the number distribution of stars with magnitude, and the angular resolution demanded by the given problem. We let the Poisson distribution portray the statistical nature of the countings, and chose the region containing the globule Barnard 361 as an example field. Uncertainties due to various combinations of the factors are presented in graphic forms: (1) Dynamic range in the extinction measurements is evaluated as a function of reseau size for varying plate limits. (2) Statistical errors involved in the star-count are analized in terms of the signal-to-noise ratio, the plate limit and the reseau size. (3) Systematic error due to the non-linearity in the number distribution are thoroughly analized. (4) Finally, a methodology is presented for correcting the systematic error in the observed radial density gradient. These graphs are meant to be used in selecting proper size of the reseau and in estimating errors inherent to the star-count analysis.

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Mechanism Design of the Micro Weighing Device by Using Null Balance Method (영위법을 이용한 미소중량 측정 장치의 기구설계)

  • Choi, In-Mook;Woo, Sam-Yong;Kim, Boo-Shik;Kim, Soo-Hyun
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.27 no.1
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    • pp.183-193
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    • 2003
  • Micro-weighing device by using null balance method is being essential part in fields of high-technology industries such as precision semiconductor industry, precision chemistry, biotechnology and genetics etc. Also, requirements for high resolution and for large measurement range increase more and more. The performance of the micro-weighing device can be determined by the mechanism design and analysis. The analytical design method has been proposed for the performance improvement such as resolution, measurement range and fast response. The 2-stage displacement amplification is designed to overcome the limit of conventional force transmitting lever. The parallel spring is designed for the measurement result independent of the input force position variation. Also, the natural frequency of mechanism is analyzed for the fast response. After each analysis, optimal design has been carried out. To verify the analysis and design result, characteristics experiments had been carried out after construction. Finally, the system had been controlled.

Improvement of Time Resolution of the Constant Q Transform using Octave Band Filter Banks (옥타브 밴드 필터 뱅크를 이용한 일정 Q 변환의 시간 해상도 개선)

  • Byun, Jeong-Keun;Kim, Dong-Jun;Choi, Do-Ill;Park, Sang-Hui
    • The Journal of the Acoustical Society of Korea
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    • v.14 no.6
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    • pp.32-39
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    • 1995
  • This paper describes a method of musical frequency estimation using tree structured octave band filter banks and the constant Q spectral transform. The performances of the proposed method are compared with those of the conventional constant Q transform using FFT. The performances are evaluated by the estimated fundamental frequency, varying the bandwidth and the frequency resolutions. The results are as follows. With the same frequency resolution of the conventional constant Q transform using FFT, the proposed method gives the better time resolutions, thus, the limit of the processing bandwidth is removed. And, when the bandwidth and the frequency resolution are set high for more accurate results, the computational complexity of the proposed method is less than that of the conventional one.

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Design of Multidivision for the Fittest of Color STN Decode (칼라 STN Decode의 최적화를 위한 다분할적 설계)

  • Ryu, Chi-Kook;Jung, Dong-Ho;Kwon, Sung-Yeol;Bae, Jong-Il;Lee, Dong-Cheol
    • Proceedings of the KIEE Conference
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    • 2002.07d
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    • pp.2617-2618
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    • 2002
  • The key point of this design can offer good picture resolution and a high-speed color STN decode. We maximize a combination processing of the color signal. Therefore, there is a color implementation at the natural. The age of the multimedia comes, so the color is considered important and wide. To be necessary a color implementation have become the importance which picture resolution is clean and low price of the liquid display TFT occupied greater part of the liquid display. But TFT could not consist low price realization. This research is a color implementation of STN at low price, design good picture resolution decode for optimum an limit of upside with frequency range maximizing and can reply in the high-speed by multidivision method. As a result, we design optimum of the STN decode.

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