日本語

Course Code etc
Academic Year 2024
College Graduate School of Science
Course Code LA115
Theme・Subtitle
Class Format Face to face (all classes are face-to-face)
Class Format (Supplementary Items)
Campus Lecture
Campus Ikebukuro
Semester Spring Semester
DayPeriod・Room Thu.5
ログインして教室を表示する(Log in to view the classrooms.)
Credits 2
Course Number PHY5390
Language Japanese
Class Registration Method Course Code Registration
Assigned Year 配当年次は開講学部のR Guideに掲載している科目表で確認してください。
Prerequisite Regulations
Acceptance of Other Colleges 履修登録システムの『他学部・他研究科履修不許可科目一覧』で確認してください。
Course Cancellation -(履修中止制度なし/ No system for cancellation)
Online Classes Subject to 60-Credit Upper Limit
Relationship with Degree Policy 各授業科目は、学部・研究科の定める学位授与方針(DP)や教育課程編成の方針(CP)に基づき、カリキュラム上に配置されています。詳細はカリキュラム・マップで確認することができます。
Notes 医学物理学副専攻【選択必修A】
RA115宇宙放射線特論と合同授業

【Course Objectives】

The aim of this course is understanding atomic structures. State transitions as a X-ray emission- or a absorption- mechanism and X-ray line broadening mechanism are also included.

【Course Contents】

Observation of the Universe provides us various images, time variations, energy spectra and so on. Recent observation with X-rays also gives us detailed spectral information and therefore we need detailed understanding of X-ray emission and absorption mechanisms in order to interpret the observed data. This course covers the study of atomic structure and the state transition, and the line broadening mechanism, in order to understand X-ray emission and absorption mechanism.

Japanese Items

【授業計画 / Course Schedule】

1 A Review of the Schrodinger Equation
2 One-electron in a Central Field, Wave Functions, Spin
3 Many-electron Systems, Statistics, The Pauli Principle, Hartree^Fock Approximation: Configurations, The Electrostatic Interaction
4 Perturbations, Level Splittings and Term Diagram, Equivalent and Nonequivalent Electrons and Their Spectroscopic Terms, Parity, Spin-Orbit Coupling
5 Zeeman Effect, Role of the Nucleus, Thermal Distribution of Energy Levels and Ionization, Thermal Equilibrium, The Saha Equation
6 Semi-Classical Theory of Radiative Transitions, Electromagnetic Hamiltonian,
7 The Transition Probability. The Dipole Approximation
8 Einstein Coefficients and Oscillator Strengths
9 Selection Rules
10 Transition Rates, Bound-bound Transition for Hydrogen, Bound-free Transitions for Hydrogen, Radiative Recombination
11 Line Broadening Mechanisms, Doppler Broadening, Natural Broadening、Collisional Broadening, Combined Doppler and Lorentz Profile
12 Topics 1
13 Topics 2
14 Topics 3

【活用される授業方法 / Teaching Methods Used】

板書 /Writing on the Board
スライド(パワーポイント等)の使用 /Slides (PowerPoint, etc.)
上記以外の視聴覚教材の使用 /Audiovisual Materials Other than Those Listed Above
個人発表 /Individual Presentations
グループ発表 /Group Presentations
ディスカッション・ディベート /Discussion/Debate
実技・実習・実験 /Practicum/Experiments/Practical Training
学内の教室外施設の利用 /Use of On-Campus Facilities Outside the Classroom
校外実習・フィールドワーク /Field Work
上記いずれも用いない予定 /None of the above

【授業時間外(予習・復習等)の学修 / Study Required Outside of Class】

テキストの内容を,他の受講者に説明できるよう,レジュメを準備すること

【成績評価方法・基準 / Evaluation】

種類 (Kind)割合 (%)基準 (Criteria)
平常点 (In-class Points)100 授業への参加度(100%)
備考 (Notes)
テキストの内容を互いに説明し議論することで,授業を進める予定である。

【テキスト / Textbooks】

No著者名 (Author/Editor)書籍名 (Title)出版社 (Publisher)出版年 (Date)ISBN/ISSN
1 Rybicki and Lightman Radiative Processes in Astrophysics Wiley-Interscience 1985 471827592

【参考文献 / Readings】

【履修にあたって求められる能力 / Abilities Required to Take the Course】

【学生が準備すべき機器等 / Equipment, etc., that Students Should Prepare】

【その他 / Others】

【注意事項 / Notice】