강원남 교수
Wonnam Kang
성균관대학교 물리학과 · 물리·천문학
연구실 소개
강원남 교수의 연구실은 고온 초전도체 및 페로브스카이트 계 초전도막의 에피택시얼 성장과 물성 특성 분석을 중심으로 연구를 진행하고 있습니다. 특히 MgB₂ 및 YBa₂Cu₃O₇₋y 등의 초전도체에서 전기적, 열적, 자기적 성질을 고해상도로 측정하고, 혼합상태에서의 홀 효과, 비틀림 및 열전전도도 등 초전도 메커니즘과 관련된 근본적 물리 현상을 규명하고자 합니다. 연구는 고성능 초전도 소자 응용을 목표로 하며, 나노스케일의 구조 제어와 입자 조사에 의한 스케일링 특성 분석을 통해 임계전류밀도 향상 및 스위치링 기반 응용 기술 개발에도 기여하고 있습니다.
연구 현황
연구 성과 추이
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주요 논문
15We fabricated high-quality c axis-oriented epitaxial MgB2 thin films using a pulsed laser deposition technique. The thin films grown on (1 i 0 2) Al2O3 substrates have a transition temperature of 39 kelvin. The critical current density in zero field is approximately 6 x 10(6) amperes per cubic centimeter at 5 kelvin and approximately 3 x 10(5) amperes per cubic centimeter at 35 kelvin, which suggests that this compound has potential for electronic device applications, such as microwave devices a
We have measured the longitudinal resistivity and the Hall resistivity in the $\mathrm{ab}$ plane of highly c-axis-oriented ${\mathrm{MgB}}_{2}$ thin films. In the normal state, the Hall coefficient ${(R}_{H})$ behaves as ${R}_{H}\ensuremath{\sim}T$ with increasing temperature (T) up to 130 K and then deviates from that linear T dependence at higher temperatures. The ${T}^{2}$ dependence of the cotangent of the Hall angle is only observed above 130 K. The mixed-state Hall effect reveals no sign
We have measured the thermopower of $\mathrm{Y}{\mathrm{Ba}}_{2}{\mathrm{Cu}}_{3}{\mathrm{O}}_{7\ensuremath{-}y}$ as a function of oxygen deficiency. We found that both the magnitude and the temperature dependence of the thermopower strongly depend upon the oxygen deficiency. As the oxygen deficiency increases, the magnitude at 273 K increases by more than a factor of 90 and the large positive peak observed at the superconducting transition temperature moves toward a higher-temperature region wi
The mixed-state Hall resistivity ${\ensuremath{\rho}}_{\mathrm{xy}}$ and the longitudinal resistivity ${\ensuremath{\rho}}_{\mathrm{xx}}$ in superconducting ${\mathrm{MgB}}_{2}$ thin films have been investigated as a function of the magnetic field over a wide range of current densities from ${10}^{2}$ to ${10}^{4} {\mathrm{A}/\mathrm{c}\mathrm{m}}^{2}.$ We observe a universal Hall scaling behavior with a constant exponent $\ensuremath{\beta}$ of $2.0\ifmmode\pm\else\textpm\fi{}0.1$ in ${\ensurem
The triple sign reversal in the mixed-state Hall effect has been observed in ion-irradiated ${\mathrm{HgBa}}_{2}{\mathrm{CaCu}}_{2}{\mathrm{O}}_{6}$ thin films. The negative dip at the third sign reversal is more pronounced for higher fields, which is opposite to the case of the first sign reversal near ${T}_{c}$ in most high-${T}_{c}$ superconductors. These observations can be explained by a recent prediction in which the third sign reversal is attributed to the energy derivative of the density
We have investigated the flux pinning force in MgB2 thick films with columnar structures. Three types of thick lms with different grain sizes were prepared on c-cut Al2O3 substrates by using the hybrid physical-chemical vapor deposition method at 520, 540 and 560 ℃. For all of the samples, the pinning force densities showed an unusual double-peak behavior with two types of irreversible fields, H*, separating the peaks. This double-peak behavior of the pinning forces did not obey any flux pinning
We have synthesized c-axis-oriented MgB2 thin films on (1 0 2) Al2O3 substrates by using a pulsed laser deposition technique and have measured the longitudinal and the Hall resistivites in the ab-plane direction. The as-grown thin films show Tc of 39.2 K with a sharp transition width of ∼0.15 K. In the normal state, the Hall coefficient (RH) behaves as RH ∼ T with increasing temperature (T) up to 130 K and then deviates from that linear T-dependence at higher temperatures. The T2 dependence of t
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