課程資訊
課程名稱
當代原子與分子物理導論
Introduction to Recent Trends in Atomic and Molecular Physics 
開課學期
102-2 
授課對象
理學院  物理學系  
授課教師
劉國平 
課號
Phys5051 
課程識別碼
222EU2230 
班次
 
學分
全/半年
半年 
必/選修
選修 
上課時間
星期二2,3,4(9:10~12:10) 
上課地點
 
備註
上課教室:原分所 Room 311
總人數上限:30人 
Ceiba 課程網頁
http://ceiba.ntu.edu.tw/1022Phys5051_ 
課程簡介影片
 
核心能力關聯
本課程尚未建立核心能力關連
課程大綱
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課程概述

1. Atomic structure and atom-atom interactions
2. Atom-field interactions
3. Recent developments in atomic physics
4. Molecular structure
5. Molecular spectroscopy
6. Non Born-Oppenheimer phenomena
7. Experimental aspects in molecular physics
 

課程目標
基本的近代原子分子物理知識。課後對發表於Physics Today, Science, Nature等相關的文獻能有初步的理解。 
課程要求
修過量子物理或近代物理,或量子化學。 
預期每週課前或/與課後學習時數
 
Office Hours
 
指定閱讀
待補 
參考書目
1. C. Foot, “Atomic Physics”, Oxford Univ. Press, 2007.
2. W. Demtroder, “Molecular Physics”, Wiley-VCH, 2005.
 
評量方式
(僅供參考)
 
  1. 本校尚無訂定 A+ 比例上限。
  2. 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)。
 
課程進度
週次
日期
單元主題
第1週
2/18  1.Introduction to atom-photon interaction
. Two-level atom without spontaneous decay
. Rabi oscillation and Ramsey fringe
. Spontaneous emission
. Two-level atom with spontaneous decay
. Opitical Bloch equation
. Optical force on atoms
2.Atom-photon interaction in a three-level system
. Electromagnetically induced transparency(EIT)
. Slow light, Storage of light and stationary light
. Nonlinear optics based on the EIT
. Single photon and bi-photon generation based on EIT
 
第2週
2/25  1.Introduction to atom-photon interaction
. Two-level atom without spontaneous decay
. Rabi oscillation and Ramsey fringe
. Spontaneous emission
. Two-level atom with spontaneous decay
. Opitical Bloch equation
. Optical force on atoms
2.Atom-photon interaction in a three-level system
. Electromagnetically induced transparency(EIT)
. Slow light, Storage of light and stationary light
. Nonlinear optics based on the EIT
. Single photon and bi-photon generation based on EIT
 
第3週
3/04  1.Introduction to atom-photon interaction
. Two-level atom without spontaneous decay
. Rabi oscillation and Ramsey fringe
. Spontaneous emission
. Two-level atom with spontaneous decay
. Opitical Bloch equation
. Optical force on atoms
2. Atom-photon interaction in a three-level system
. Electromagnetically induced transparency(EIT)
. Slow light, Storage of light and stationary light
. Nonlinear optics based on the EIT
. Single photon and bi-photon generation based on EIT
 
第4週
3/11  Atom trapping and cooling
. Magnetic trap
. Optical dipole trap
. Ion trap
. Laser Cooling
. Magneto-optical trap
. Evaporative cooling

Bose-Einstein Condensation
. Cold collisions.
. Spinor condensates
Coherent manipulation of atoms with lasers
. Raman transition
. Controlling the internal and external states
. Application to quantum information sciences
 
第5週
3/18  Atom trapping and cooling
. Magnetic trap
. Optical dipole trap
. Ion trap
. Laser Cooling
. Magneto-optical trap
. Evaporative cooling

Bose-Einstein Condensation
. Cold collisions.
. Spinor condensates
Coherent manipulation of atoms with lasers
. Raman transition
. Controlling the internal and external states
. Application to quantum information sciences
 
第6週
3/25  Atom trapping and cooling
. Magnetic trap
. Optical dipole trap
. Ion trap
. Laser Cooling
. Magneto-optical trap
. Evaporative cooling

Bose-Einstein Condensation
. Cold collisions.
. Spinor condensates
Coherent manipulation of atoms with lasers
. Raman transition
. Controlling the internal and external states
. Application to quantum information sciences
 
第7週
4/01  . Trapping of cold atoms
. Atoms dressed by photons
. Bose-Einstein condensates
. Selected topics of cold atoms in optical lattices 
第8週
4/08  Trapping of cold atoms
. Atoms dressed by photons
. Bose-Einstein condensates
. Selected topics of cold atoms in optical lattices 
第9週
4/15  Trapping of cold atoms
. Atoms dressed by photons
. Bose-Einstein condensates
. Selected topics of cold atoms in optical lattices 
第10週
4/22  1.5 hours on "Recent success in using quantum simulations to understand interesting physics and chemistry"
. Using quantum chemistry methods to predict metal surface reactions
. Ab initio molecular dynamics simulation on liquid/solid phase of water
. Quantum chemsitry calculation of proteins
. Reaction dynamics using quantum chemistry based trajectories to understand curious reaction features for CD3H + F.

1.5 hours on "Born-Oppenheimer approximation and its failures(using equations)"  
第11週
4/29  2 hours of "Linear Combination of Atomic Orbitals(using equations and figures)"
. Diatomic molecules(H2+,H2)
. Polyatomic molecules using LCAO

1 hour of "Vibration of diatomic molecules"
. Harmonic oscillator, morse oscillator 
第12週
5/06  1.5 hours on "Vibration in polyatomic molecues, normal modes"
1.5 hours on "Potential Energy Surface and reaction" 
第13週
5/13  Understanding structure of water via molecular spectroscopies (I)
--This lecture will introduce different spetroscopic methods to probe different structures of water in gas, liquid to crytalling phases.
 
第14週
5/20  Understanding structure of water via molecular spectroscopies (II)
--We will introduce a few simple examples on how computational methods can be useful to understand experimental data to extract structural information. 
第15週
5/27  Wave-particle duality of large molecules
--Review on the foundation and concept of quantum theory and its application to molecules. 
第16週
6/03  A wonder of double-well potentials
--Tunneling, localization, Delocalization, and more. 
第17週
6/10  Chiral response of molecules
--Interaction between molecules and the radiation fields.