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課程名稱 |
固態理論一 Theory of Solid (Ⅰ) |
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開課學期 |
113-2 |
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授課對象 |
理學院 物理學研究所 |
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授課教師 |
高英哲 |
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課號 |
Phys8020 |
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課程識別碼 |
222 D1740 |
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班次 |
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學分 |
3.0 |
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全/半年 |
半年 |
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必/選修 |
選修 |
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上課時間 |
星期五2,3,4(9:10~12:10) |
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上課地點 |
新物618 |
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備註 |
總人數上限:30人 外系人數限制:2人 |
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課程簡介影片 |
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核心能力關聯 |
核心能力與課程規劃關聯圖 |
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課程大綱
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課程概述 |
This course provides an in-depth exploration of the fundamental principles and advanced topics in solid-state physics. It offers a comprehensive understanding of the behavior of solids through theoretical models and experimental insights, equipping students with the knowledge necessary to analyze the physical properties of various materials. Key topics covered include:
1. Crystal Structure: Examination of lattice structures, symmetry, and the basis for understanding material organization at the atomic scale.
2. One-Electron Approximation and Band Theory: Introduction to the electronic structure of solids, energy bands, and their implications for electrical and optical properties.
3. Application of Group Theory in Solids: Utilization of symmetry principles to simplify the analysis of electronic and vibrational properties in crystalline systems.
4. Second Quantization and Electron Gas: Advanced formulation of quantum mechanics applied to many-body systems and the physics of free electron gases.
5. Optical and Transport Properties in Metals: Study of conductivity, reflectivity, and other phenomena related to the interaction of metals with light and electrons.
6. Optical Properties in Insulators: Analysis of light-matter interactions in insulating materials, including absorption and luminescence.
7. Lattice Vibrations and Phonons: Exploration of vibrational modes in solids, their quantization, and the role of phonons in thermal and electronic properties.
8. Magnetism: Investigation of magnetic phenomena, including ferromagnetism, antiferromagnetism, and the quantum theory of magnetism.
9. Semiconductors: Comprehensive study of intrinsic and extrinsic semiconductors, carrier dynamics, and their technological applications.
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課程目標 |
By the end of the course, students will gain a robust theoretical foundation and analytical skills for understanding and predicting the physical behavior of various solid-state systems, laying the groundwork for advanced research or practical applications in material science, nanotechnology, and related fields. |
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課程要求 |
Quantum Mechanics, Statistical Physics |
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預期每週課前或/與課後學習時數 |
20 |
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Office Hours |
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指定閱讀 |
No Required Textbooks |
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參考書目 |
N. W. Ashcroft and N. D. Mermin, "Solid State Physics" ( Saunders College Publishing, 1976).
John J. Quinn, Kyung-Soo Yi, "Solid State Physics" 2nd edition (Springer, 2018).
Philip L. Taylor and Olle Heinonen, “A Quantum Approach to Condensed Matter Physics” (Cambridge University Press, 2002).
G. Grosso and G. P. Parravicini, "Solid State Physics" (Academic Press, 2000).
P. Phillips, "Advanced Solid State Physics", (West View Press 2003).
C. Kittel, "Introduction to Solid State Physics", 7 edition (Wiley, 1995); "Quantum Theory of Solids", 2nd ed. (Wiley,1987). |
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評量方式 (僅供參考) |
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No. |
項目 |
百分比 |
說明 |
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1. |
Homework |
40% |
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2. |
Midterm |
20% |
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3. |
Final |
20% |
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4. |
Paper |
20% |
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- 本校建議 A+ 比例上限為 20% ,非強制規定,授課教師可依課程要求調整,建議必修課程參考。
- 本校採用等第制評定成績,學生成績評量辦法中的百分制分數區間與單科成績對照表僅供參考,授課教師可依等第定義調整分數區間。詳見學習評量專區 (連結)。
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針對學生困難提供學生調整方式 |
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上課形式 |
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作業繳交方式 |
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考試形式 |
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其他 |
由師生雙方議定 |
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