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
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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)
   
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.