Raman Laser System for Atom Coherent Manipulation 可用于原子相干操控的Raman激光系统研究
Realizing the processes of making material on nanometer yardstick, and the monoatomic, single molecule electronic device through the atom, molecule manipulation is the goal that people have pursued all the time. 通过原子、分子操纵,实现在纳米尺度上对材料进行加工,完成单原子、单分子电子器件的制作,一直是人们追求的目标。
Scanning probe microscope ( SPM) is used not only for measuring the micro profiles of surfaces, but also for nano ultraprecise machining and atom manipulation now. 扫描探针显微镜(SPM)现在不仅用于表面微观形貌的检测,同时也用于纳米超精密加工和原子操纵。
Single Atom Manipulation on Si Surface 在硅表面上的单原子操纵
Atom Manipulation Using Scanning Tunneling Microscopy in Nanometer Scale 利用STM技术的原子纳米尺度操纵
With the fast development of atom optics, a new subject has been created molecule optics, that studies the interaction of neutral molecules with electric, magnetic and light fields, as well as the cooling, trapping, manipulation and control of molecules. 随着原子光学的快速发展,一门新兴的有关研究中性分子与电场、磁场和光场等物质相互作用及其冷却、囚禁、操控与应用的学科&分子光学正在逐步形成。
STM Single Atom Manipulation Technology and Its Physical Mechanism 扫描隧道显微镜单原子操纵技术及其物理机理
Roles of STM tip and external electric field in the single atom manipulation STM针尖和外电场在Si(111)-7×7表面单原子操纵中的作用
Optical system provide with Cs atom manipulation and transition probabilities for the detection of all laser. NTSC-01喷泉钟光学系统提供Cs原子操控和跃迁几率探测用的所有激光。
This work is very important to broaden the applications of such kind of laser diode in studying the influence of the atom manipulation, cold-atom physics and laser spectroscopy. 该研究对于扩展这类激光器的应用,尤其是在研究冷原子物理和激光光谱中对原子操控的影响,具有非常重要的意义。