首页--数理科学和化学论文--物理学论文--理论物理学论文--量子论论文

光机械系统的动力学和透射率的理论研究

摘要第4-6页
Abstract第6-8页
主要符号表第20-21页
1 Introduction第21-35页
    1.1 Motivation第21-22页
    1.2 Optomechanics第22页
    1.3 Background of optomechanics第22-24页
    1.4 Classical mechanical harmonic oscillator第24-27页
    1.5 Quantum mechanical oscillator第27-30页
    1.6 Single mode field第30-32页
        1.6.1 Two-level atoms and Jaynes-Cummings model第30-32页
    1.7 Outline of the thesis第32-35页
2 Theory of the optomechanics第35-69页
    2.1 Overview第35页
    2.2 Optical cavities第35-41页
        2.2.1 Basic parameters第35-37页
        2.2.2 Classical cavity第37-39页
        2.2.3 Quantum cavity第39-41页
    2.3 Force exerted during light-matter interaction第41-44页
        2.3.1 Interaction between light and mechanics第43-44页
    2.4 Radiation pressure第44-49页
        2.4.1 Classical analysis of radiation pressure第45-46页
        2.4.2 Quantum analysis第46-49页
    2.5 Basic optomechanical system第49-52页
    2.6 Basic Hamiltonian in optomechanical system第52-53页
    2.7 Optomechanical parameters Scales第53-54页
    2.8 Picture of optomechanics in classical physics第54页
    2.9 Picture of optomechanics in quantum physics第54-58页
        2.9.1 Red-detuned regime第57页
        2.9.2 Blue-detuned regime第57-58页
        2.9.3 Resonance regime第58页
        2.9.4 large detuning case第58页
    2.10 Light induced modification of mechanical response第58-60页
        2.10.1 Light induced shift in frequency第59页
        2.10.2 Optomechanical damping rate第59-60页
    2.11 Optomechanical coupling第60-61页
    2.12 Input-output formalism for an optical cavity第61-69页
        2.12.1 Input-output formalism for external driving optical cavity第64-69页
3 Dynamics and transmission of single two-level atom in an optomechanicalsystem第69-89页
    3.1 Overview and introduction第69-71页
    3.2 Theoretical model第71-73页
    3.3 Dynamics第73-79页
    3.4 Steady state solutions of the equations of motion第79-80页
    3.5 Transmission and reflection第80-88页
        3.5.1 Experimental feasibility and transmission on the bases of real experimental values第83-88页
    3.6 Conclusion第88-89页
4 Dynamics and transmissivity of the optomechanical system in the squeezedenvironment第89-107页
    4.1 Introduction第89-91页
    4.2 Hamiltonian of the system第91-93页
    4.3 Dynamics of the system第93-101页
    4.4 Steady state solutions第101页
    4.5 Transmission第101-105页
    4.6 Summery第105-107页
5 Optomechanical induced transparency under the influence of spin ensemblesystem第107-123页
    5.1 Introduction第107-109页
    5.2 Theoretical model and Hamiltonian第109-111页
    5.3 Dynamics of the system第111-115页
    5.4 OMIT phenomena in the system第115-122页
    5.5 Summery第122-123页
6 Conclusions and Future work第123-125页
    6.1 Conclusions第123-124页
    6.2 Future work第124-125页
参考文献第125-135页
攻读博士学位期间发表学术论文情况第135-137页
创新点摘要第137-139页
致谢第139-140页
作者简介第140页

论文共140页,点击 下载论文
上一篇:托卡马克中外扭曲模与电阻壁模的数值研究
下一篇:高能重离子碰撞中正反玻色子对的背对背关联