• 제목/요약/키워드: Coupled Cavity

검색결과 133건 처리시간 0.023초

비파괴 측정을 위한 근접장 마이크로파 현미경 연구 (The Study of Near-field Scanning Microwave Microscope for the Nondestructive Detection System)

  • 김주영;김송희;유현준;양종일;유형근;유경선;김승완;이기진
    • 비파괴검사학회지
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    • 제24권5호
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    • pp.508-517
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    • 2004
  • 근접장의 특성과 근접장 마이크로파 현미경의 배경이론을 설명하였고 유전체 공진기 제작에 앞서 HFSS (high frequency structure simulator)를 이용한 모의 시뮬레이션을 기술하였다. 이것을 바탕으로 원통형 유전체 공진기를 제작하여 금속탐침과 결합한 근접장 마이크로파 현미경(near field scanning microwave microscope : NSMM)을 구성하였다. 제작한 유전체 공진기의 특성은 HFSS를 이용하여 모의 실험한 결과와 비교하였다 Tip의 기하학적 모양에 따른 공간분해능과 감도(sensitivity)를 연구하였고 contrast가 가장 좋은 hybrid tip을 개발하였다. 전도도가 서로 다른 금속시료에 따른 NSMM의 반사계수의 변화를 측정하였고 실험결과와 이론적 시료의 임피던스를 비교하였다. 마지막으로 유전체 공진기를 이용한 NSMM으로 공간 분해능이 $1{\mu}m$의 Cr과 NiFe 패턴의 이미지를 비접촉, 비파괴방법으로 얻었다.

Titanium Ions Released from Oral Casting Alloys May Contribute to the Symptom of Burning Mouth Syndrome

  • Park, Yang Mi;Kim, Kyung-Hee;Lee, Sunhee;Jeon, Hye-Mi;Heo, Jun-Young;Ahn, Yong-Woo;Ok, Soo-Min;Jeong, Sung-Hee
    • Journal of Oral Medicine and Pain
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    • 제42권4호
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    • pp.102-108
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    • 2017
  • Purpose: Many metal ions released from dental casting alloys have been reported to influence the intraoral symptoms of oral lichen planus (OLP) and burning mouth syndrome (BMS). The aim of this study was to investigate the relationship between salivary metal ion levels and the prosthetic duration as well as to evaluate the time-dependent morbid effects of metal ions in OLP and BMS patients. Methods: Three study groups consist of the following subjects respectively: 17 OLP patients, 12 BMS patients, and 12 patients without oral symptoms. The salivary concentrations of 13 metal ions (copper, cobalt, zinc, chromium, nickel, aluminum, silver, iron, titanium [Ti], platinum, tin, palladium, and gold) were measured by Laser Ablation Microprobe Inductively coupled Plasma Mass Spectrometry. Results: The Ti ions had statistically significant differences among the groups with a prosthetic duration of less than 5 years. There were no significant differences between all ion levels among the groups wearing dental cast alloys for over 5 years. In the BMS group, the level of Ti ions in patients with prosthetic restorations less than 5 years old were significantly high (p<0.05). Conclusions: In the BMS group, 3-60 months during which salivary Ti levels were higher were matched with the duration of burning symptoms ($15.6{\pm}17.1months$). Furthermore, Ti ions were statistically high in the oral cavity of BMS patients fitted with dental casting alloys for 5 years. These results suggest that Ti ions released from dental implants and oral prostheses could attribute to burning sensation of BMS.

EPR SPECTRA OF Mn ION WITH TWO PHASES IN THE Y-Ba-Cu-Mn-O HIGH Tc SUPERCONDUCTOR

  • Kim, Seon-Ok;Rudowicz, Czeslaw;Lee, Soo-Hyung;Yu, Seong-Cho
    • 한국자기학회지
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    • 제5권5호
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    • pp.782-785
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    • 1995
  • In this paper, $Mn^{2+}$ ion was doped in Y-Ba-Cu-O as an EPR probe. The following samples were prepared by conventional solid-state reaction method : $YBa_{2}Cu_{2.96}Mn_{0.04}O_{7-\delta}$ (MN-I), annealed $YBa_{2}Cu_{2.96}Mn_{0.04}O_{7-\delta}$ (AMN) and $YBa_{2}Cu_{2.94}Mn_{0.06}O_{7-\delta}$ (MN-II). AMN sample was obtained from MN-I by annealing for 1 hr under the Ar gas atmosphere at $600^{\circ}C$. X-band (~9.05 GHz) EPR spectra were measured from 103 K to room temperature by employing a JES-RE3X spectroscopy with a $TE_{0.11}$ cylindrical cavity and 100 kHz modulation frequency. In MN-I we have observed only the $Cu^{2+}$ signal. The fact that no $Mn^{2+}$ signal was observed, in spite of $Mn^{2+}$ being a very sensitive EPR probe, indicates that most likely isolated $Mn^{2+}$ ions don't exist in the MN-I sample. Most probably $Mn^{2+}$ ions in the MN-I sample interact antiferromagnetically and hence are EPR silent. The AMN spectra of at room temperature and 103 K indicate not only the $Cu^{2+}$ signal but also an extra signal, which increases with decreasing temperature. It is suggested that the extra signal originates from Mn ions that were antiferromagnetically coupled before the annealing process. In MN-II, from 103 K to room temperature, also, the extra signal was observed together with the $Cu^{2+}$ signal. The extra signal in MN-II, however, decreases with decreasing temperature and nearly disappears at 103 K. The signal originates from Mn ions in impurity phases that include $Mn^{2+}$ ions. We suppose that there exist at least two $Mn^{2+}$ doped phases in Y-Ba-Cu-O. The $Mn^{2+}$ signal of one phase is undectable at all temperature and that of another phase decreases with decreasing temperature and disappears around 103 K.

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