• Title/Summary/Keyword: 다중선 비례검출기

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X-선 검출기의 이득 보정 및 신호처리회로 구성

  • 남욱원;최철성;문신행
    • Bulletin of the Korean Space Science Society
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    • 1993.04a
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    • pp.22-22
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    • 1993
  • 천체 B-선 관측용으로 많이 이용되고 있는 X-선 비례계수관을 실험실형으로 재작하고 그 특성을 조사하였다. X-선 검출기의 구조는 10 $\times$ 20 $\times$ 2cm3 인 검출체적내에 10개의 전극선이 설치되어있는 다중선 비례계수관이며, 검출가스로서 Argon(90%) + CH4 (10%)인 g혼합가스를 사용하였다. 이러한 구조에서 5.9 keV에 대한 에너지 분해능은 16%를 얻었으나, 정상적인 전극연결방법에서는 검출기 끝측에 위치한 전극에서 생기는 electric field 변형매문에, 양극선 배열방향에서 조정된 이득의 군일성이 나쁘게 나타났다. 따라서 다중선들의 각 전극선에 전압보상법(voltage compansation method)을 적용하여 검출기 전반에 걸친 이득의 균일성을 2 % (rms 값) 이내로 보정할 수 있었다. 아울러 신호처리회로 중 에너지분석을 위한 파고분석기, 비 X-선 재거를 위한 상승시간선별기(rise-time discriminator)등을 제작하였으며 이들을 이용한 전반적인 신호처리회로의 구성에 대하여 논하고자 한다.

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A MONTE CARLO SIMULATION FOR THE X-RAY DETECTION EFFICIENCY OF A MULTI-CELL PROPORTIONAL COUNTER (다중셀 비례계수기의 X-선 검출효율에 대한 수치모의 실험)

  • 이기원;최철성;남욱원;선광일
    • Journal of Astronomy and Space Sciences
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    • v.15 no.2
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    • pp.341-358
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    • 1998
  • The X-ray astronomy team of the Korea Astronomy Observatory(KAO) is planning to develop a multi-cell proportional counter, adopting an anti-coincidence method to reduce its internal background. We have developed a Monte Carlo code to determine the X-ray detection efficiency of the counter. As a check of our code, we successfully reproduced the detection efficiency of Ginga/LAC. In this paper, we report the simulation results for the counter being considered in KAO.

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Development of Multiwire Proportional Counter for Measurement of Environmental-level Alpha Particles (환경준위 알파입자측정을 위한 다중선 비례계수기 개발(I))

  • Oh, Pil Jae;Park, Tae Soon;Lee, Min Kie;Kim, Kyung Hwa
    • Analytical Science and Technology
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    • v.9 no.3
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    • pp.262-269
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    • 1996
  • The muiltiwire proportional counter for the measurement of low-level and environmental $\alpha$ particles emitting nuclides was developed. External dimension of the devloped multiwire proportional counter is $350{\times}290{\times}30mm$ and the sensitivity area is $250{\times}200mm$. The wall material of the detector was selected the stainless steel to prevent the deformation by external impact and to obtain minimum background. The anode and cathode wires were used the stainless steel material of diameter $50{\mu}m$. The spacing of each wires are 10.0mm, 5.0mm and the numbers of total wire are 21, 42 lines, respectively. The multiwire proportional counter was designed that the measurement source is placed within the detector to prevent the wall absorption effect and the efficiency variation by various source heights. The characteristics of the developed detector have been investigated to obtain the plateau, operating voltage, background, counting efficiency, position sensitivity and energy resolution etc. For the $^{241}Am$ nuclide, the calculated LLD(Lower Limit of Detection) is 5.0mBq/L which is lower than 40mBq/L of recommended LLD value by ISO(International Organization for Standardization).

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Design and Construction of Multi-wire Proportional Counter and Preamplifier for Measurement of Charged Particle (하전입자의 측정을 위한 다중선 비례계수기와 전치증폭기의 설계 제작)

  • Kim, Jong-Soo;Yoon, Suk-Chull
    • Journal of Radiation Protection and Research
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    • v.21 no.2
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    • pp.139-143
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    • 1996
  • A multi-wire proportional counter with large sensitive area was designed and constructed considering diameter of anode wire. its material and space. A preamplifier connecting detector to main amplifier or counter was also designed and constructed for measurement output pulse from multi-wire proportional counter. The preamplifier was composed of charge-sensitive differential circuit. clipping circuit and amplification circuit. To test the performance of this equipment, terminal output pulse from the preamplifier was measured and compared with noise For these tests $^{239}Pu(360 Bq)\;and\; ^{90}Sr/^{90}Y(250 Bq)$ were used as radiation sources. The noise ingredient contributing to the maximum amplitude(180mV from $^{239}Pu$ and 200 mV from $^{90}Sr/^{90}Y$) was found to be very small(8 mV) Piled up pulse occurring at the output pulse of charge-sensitive differential circuit was measured as an independent pulse since this affected the amplification in the clipping circuit and amplification circuit. This information can be used to improve the loss of measurement due to piled up pulse.

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Development of B4C Thin Films for Neutron Detection (스퍼터링 코팅기법을 이용한 중성자 검출용 B4C 박막 개발)

  • Lim, Chang Hwy;Kim, Jongyul;Lee, Suhyun;Cho, Sang-Jin;Choi, Young-Hyun;Park, Jong-Won;Moon, Myung Kook
    • Journal of Radiation Protection and Research
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    • v.40 no.2
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    • pp.79-86
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    • 2015
  • $^3He$ gas has been used for neutron monitors as the neutron converter owing to its advantages such as high sensitivity, good ${\gamma}$-discrimination capability, and long-term stability. However, $^3He$ is becoming more difficult to obtain in last few years due to a global shortage of $^3He$ gas. Accordingly, the cost of a neutron monitor using $^3He$ gas as a neutron converter is becoming more expensive. Demand on a neutron monitor using an alternative neutron conversion material is widely increased. $^{10}B$ has many advantages among various $^3He$ alternative materials, as a neutron converter. In order to develop a neutron converter using $^{10}B$ (actually $B_4C$), we calculated the optimal thickness of a neutron converter with a Monte Carlo simulation using MCNP6. In addition, a neutron converter was fabricated by the Ar sputtering method and the neutron signal detection efficiencies were measured with respect to various thicknesses of fabricated a neutron converter. Also, we developed a 2-dimensional multi-wire proportional chamber (MWPC) for neutron beam profile monitoring using the fabricated a neutron converter, and performed experiments for neutron response of the neutron monitor at the 30 MW research reactor HANARO at the Korea Atomic Energy Research Institute. The 2-dimensional MWPC with boron ($B_4C$) neutron converter was proved to be useful for neutron beam monitoring, and can be applied to other types of neutron imaging.

CORRECTION OF GAS MULTIPLICATION UNIFORMITY OF X-RAY DETECTOR BY VOLTAGE COMPANSATION METHOD (전압 보상법에의한 X-선 검출기의 이득 보정)

  • 남욱원;최철성;문신행
    • Journal of Astronomy and Space Sciences
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    • v.10 no.1
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    • pp.86-93
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    • 1993
  • We experiment of the method to obtain the uniform gas multiplication in multiwire proportional counter. The general techenique of anode wire connection for the high voltage supply could not secure the uniformity of multiplication because of the edge effect at the outer anode wires. We found that the variation of the multiplication could be corrected in the accuracy of $\pm$1.6% rms using the voltage compansation method.

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