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- 자연과학 >수학ㆍ물리ㆍ천문ㆍ지리 >물리학
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- 강의학기
- 2012년 2학기
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This is a graduate course in condensed matter physics based on some 14 Nobel Prizes in Physics, from the 1956 Prize to Shockley, Bardeen and Brattain "for their researches on semiconductors and their discovery of the transistor effect" to the 2010 Prize to Geim and Novoselov "for groundbreaking experiments regarding the two-dimensional material graphene". A rather broad set of topics will be covered, based on the Prizes given in 1956, 1962, 1972, 1973, 1977, 1978, 1985, 1986, 1987, 1991, 1998, 2003, 2007 and 2010 (see http://nobelprize.org for details). Historical aspects as well as connections to the state-of-the-art will be discussed for the various discoveries and inventions behind the Prizes.
- 수강안내 및 수강신청
- ※ 수강확인증 발급을 위해서는 수강신청이 필요합니다
차시별 강의
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Introduction | Introduction to Alfred Nobel and the Nobel Prizes | |
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Superconductivity Ⅰ(1) | Nobel prize, superconductivity, The coopers problem | |
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Superconductivity Ⅰ(2) | |
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Superconductivity Ⅱ(1) | Language of 2nd Quantization formulations of quantum mechanics |
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Superconductivity Ⅱ(2) | |
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Superconductivity Ⅲ(1) | Principle of tunneling, the making of a tunnel junction, BCS theory | |
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Superconductivity Ⅲ(2) | |
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Superfluidity Ⅰ | Nobel prize-Lev Landau Landaus fermi liquid theory |
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Superfluidity Ⅱ(1) | Fermion ideal gas Pauli spin susceptiblity Quasiparticle lifetime |
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Superfluidity Ⅱ(2) | |
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Fractional Quantum Hall Effect Ⅰ(1) | Classical Hall Effect Derive hall resistance |
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Fractional Quantum Hall Effect Ⅰ(2) | |
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The Nobel Prize in Physics 2012 | Ground-breaking experimental method Probing the Quantum-classical crossover |
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Fractional Quantum Hall Effect Ⅱ(1) | Quantum Mechanics of a Particle in a Magnetic Field Laws of Classical Mechanics Poisson bracket Particle in a Magnetic Field |
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Fractional Quantum Hall Effect Ⅱ(2) | |
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Fractional Quantum Hall Effect Ⅲ(!) | How to measure fractional charge | |
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Fractional Quantum Hall Effect Ⅲ(2) | |
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Electron Localization Ⅰ(1) | The Nobel Prize in Physics 1977 the band theory of solids, Anderson transition, Mott insulator |
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Electron Localization Ⅰ(2) | |
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Electron Localization Ⅱ(1) | Motts law variable range hopping Hisenberg uncertainty principle |
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Electron Localization Ⅱ(2) | |
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Electron Localization Ⅲ(1) | Disorder - Electron Localization weak localization Quasiclassical approach to the weak localization |
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Electron Localization Ⅲ(2) | |
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Electron Localization Ⅳ | weak localization - effect of magnetic field |
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