• 제목/요약/키워드: Diamagnetic shift

검색결과 7건 처리시간 0.021초

Diamagnetic Shift of a InGaP-AlInGaP Semiconductor Single Quantum Well under Pulsed-magnetic Fields

  • Choi, B.K.;Kim, Yongmin;Song, J.D.
    • Applied Science and Convergence Technology
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    • 제24권5호
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    • pp.156-161
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    • 2015
  • Application of magnetic fields is important to characterize the carrier dynamics in semiconductor quantum structures. We performed photoluminescence (PL) measurements from an InGaP-AlInGaP single quantum well under pulsed magnetic fields to 50 T. The zero field interband PL transition energy matches well with the self-consistent Poisson-$Schr{\ddot{o}}dinger$ equation. We attempted to analyze the dimensionality of the quantum well by using the diamagnetic shift of the magnetoexciton. The real quantum well has finite thickness that causes the quasi-two-dimensional behavior of the exciton diamagnetic shift. The PL intensity diminishes with increasing magnetic field because of the exciton motion in the presence of magnetic field.

1-(phenoxymethyl)benzotriazole 유도체 중 methylene 양성자의 chemical shift 에 관한 자유에너지 관계의 조성과 용매 의존성 (Solvent Dependence and Component of Linear Free Energy Relationship on the Chemical Shift of Methylene Proton in 1-(phenoxymethlyl)benzotriazole Derivatives)

  • 성낙두
    • 대한화학회지
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    • 제33권5호
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    • pp.538-544
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    • 1989
  • 1-(phenoxymethyl)benzotriazole(1)과 1-(thiophenoxymethyl)benzotriazole(2) 유도체중의 X 치환기가 전자를 끄는 세기(${\rho}<0$)와 methylene group의 인접 Y원자에 의한 local diamagnetic effect(Y=O(1)>S(2)), 그리고 용매의 극성파라미터($E_T$=Kcal/mol:acetone;42.2>chloroform;39.0)가 클수록 methylene group의 수소원자($H_m$)와 용매사이에 B-형의 수소결합성이 증가되었으며 (1)의 methylene group 에 대한 substituent chemical shift($CH_2-SCS$)에 미치는 자유 에너지 직선관계(LFER)의 조성은 아세톤 용액 중에서 장(F)(또는 유발(I))-효과 보다 공명(R)-효과가 더 크게 나타나는 용매 의존적인 경향이었다.

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Optical Transitions of a InGaP-AlInGaP Semiconductor Single Quantum Well in Magnetic Fields

  • 김용민;신용호;송진동
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.332.1-332.1
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    • 2016
  • Application of magnetic fields is important to characterize the carrier dynamics in semiconductor quantum structures. We performed photoluminescence (PL) measurements from an InGaP-AlInGaP single quantum well under pulsed magnetic fields to 50 T. The zero field interband PL transition energy matches well with the self-consistent Poisson-Schr?dinger equation. We attempted to analyze the dimensionality of the quantum well by using the diamagnetic shift of the magnetoexciton. The real quantum well has finite thickness that causes the quasi-two-dimensional behavior of the exciton diamagnetic shift. The PL intensity diminishes with increasing magnetic field because of the exciton motion in the presence of magnetic field.

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NMR Study on Ru(II) Complexes Containnig 2,$2^{\prime} :\;6^{\prime},2^{\prime}^{\prime}$-terpyridine

  • Seok, Won K.;Moon, Sung W.;Kim, Mee Y.
    • Bulletin of the Korean Chemical Society
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    • 제19권11호
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    • pp.1207-1210
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    • 1998
  • The diamagnetic six-coordinate ruthenium polypyridyl complexes have been prepared and assigned. 1H NMR spectral studies were used to unravel the ligand field strength and the basicity on the chemical shift to the particular proton of ligand L in [(tpy)(L)RuⅡ(X)]+/2+ (L=bpy, bqi, dmbpy, phen; X=Cl, CN, N3, NCCD3, NO2, SCN) complexes.

Magneto-optical Measurements of Semiconductor Quantum Structures in Pulsed-magnetic Fields

  • Kim, Yongmin
    • Applied Science and Convergence Technology
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    • 제23권1호
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    • pp.1-13
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    • 2014
  • Semiconductor quantum structures are often characterized by their energy gaps which are modified by the quantum size effect. Energy levels in semiconductors can be realized by optical transitions within confined structures. Photoluminescence spectroscopy in magnetic fields at low temperatures has proved to be a powerful technique for investigating the electronic states of quantum semiconductor heterostructures and offers a complimentary tool to electrical transport studies. In this review, we examine comprehensive investigations of magneto-excitonic and Landau transitions in a large variety of undoped and doped quantum-well structures. Strong magnetic fields change the diamagnetic energy shift of free excitons from quadratic to linear in B in undoped single quantum well samples. Two-dimensional electron gas induced by modulation doping shows pronounce quantum oscillations in integer quantum Hall regime and discontinuous transition at ${\nu}=1$. Such discontinuous transition can be explained as the formation of spin waves or Skyrmions.

Myoglobin 시안 단백질에 포함된 Heme에 대한 전자 및 분자구조 규명을 위한 $^{13}C$ NMR분석 ($^{13}C$ NMR Analysis for the Characterization of Heme Electronic/Molecular Structure in Horse Myoglobin Cyanide)

  • 이강봉;권지혜;이호진;김영만;최영상
    • 분석과학
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    • 제11권1호
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    • pp.73-78
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    • 1998
  • 미오글로빈 시안착물(MbCN) 단백질에 대한 NMR의 HMQC 연구는 수소와 결합된 상자기성 heme 탄소 시그날의 완전한 지정을 가능토록 해준다. 이러한 상자기성 MbCN에 대한 HMQC 실험의 적용은 heme시그날뿐만 아니라 상자기성 아미노산에 대해 결합된 수소와 탄소간의 coherence를 지정하여주며 자연존재량 $^{13}C$시그날의 지정이 모든 low-spin 상자기성 heme단백질에서도 가능하다. 이러한 시그날 지정 전략은 정자기성 영역에서 공명하는 수소 시그날의 지정을 위해 사용되는 NOE에만 의존하는것 보다 훨씬 명확한 시그날지정이 가능하다. 2,4-비닐기의 ${\alpha}$-탄소들과 7-프로피온기의 ${\beta}$-탄소에서 특이한 anti-Curie형태를 보이는 것은 그들이 heme평면에 존재하고 있지 않다는 증거가 된다. Proximal His에 의해 유도된 heme의 전자 및 자성의 비대칭은 heme탄소 시그날공명이 $25^{\circ}C$에서 250 ppm의 범위에 이르도록 한다. 이러한 heme 탄소 시그날 공명은 미오그로빈 heme의 전자구조를 분석하는데 있어서 수소 시그날의 공명보다 더욱 민감한 증거로 작용할수 있다.

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