Development of ultrashort laser pulse shaping technique and its applications in micro- and nano-optical systems

被引:0
|
作者
Chu S. [1 ]
Li H. [1 ]
Wang S. [1 ]
Yang H. [1 ]
Gong Q. [1 ]
机构
[1] State Key Laboratory for Artificial Microstructure and Mesoscopic Physics, School of Physics, Peking University, Beijing
来源
Gong, Qihuang (qhgong@pku.edu.cn) | 1600年 / Chinese Optical Society卷 / 36期
关键词
Photoemission electron microscope; Physical optics; Pulse shaping; Single molecule spectroscopy; Ultrafast spectroscopy;
D O I
10.3788/AOS201636.1026007
中图分类号
学科分类号
摘要
An ultrashort laser pulse will own different characteristic time distribution when its phase, amplitude or polarization is modulated in the frequency domain. These characterized ultrashort laser pulses are applied in the research of basic physical processes and optical devices. Benefiting from the development of photoemission microscopy, ultrasensitive spectroscopy and scanning near-field optical microscopy, the ultrashort laser pulse shaping technique has been more and more applied in micro- and nano-optics. This review summarizes the development of ultrashort laser pulse shaping and characterizing techniques and the usage of the ultrashort laser pulse shaping technique in scanning near-field optical microscopy, photoemission electron microscope and single molecule spectroscopy. © 2016, Chinese Lasers Press. All right reserved.
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页数:11
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  • [1] Nuernberger P., Vogt G., Brixner T., Et al., Femtosecond quantum control of molecular dynamics in the condensed phase, Physical Chemistry Chemical Physics, 9, pp. 2470-2497, (2007)
  • [2] Cundiff S.T., Weiner A.M., Optical arbitrary waveform generation, Nature Photonics, 4, pp. 760-766, (2010)
  • [3] Froehly C., Colombeau B., Vampouille M., II shaping and analysis of picosecond light pulses, Progress in Optics, 20, pp. 65-153, (1983)
  • [4] Yelin D., Meshulach D., Silberberg Y., Adaptive femtosecond pulse compression, Optics Letters, 22, 23, pp. 1793-1795, (1997)
  • [5] Zeek E., Maginnis K., Backus S., Et al., Pulse compression by use of deformable mirrors, Optics Letters, 24, 7, pp. 493-495, (1999)
  • [6] Zhang S., Zhang H., Lu C., Et al., Mechanism of polarization-induced single-photon fluorescence enhancement, The Journal of Chemical Physics, 133, 21, (2010)
  • [7] Zhang S., Lu C., Jia T., Et al., Controlling field-free molecular orientation with combined single- and dual-color laser pulses, Physical Review A, 83, 4, (2011)
  • [8] Zhang S., Zhang H., Jia T., Et al., Coherent control of two-photon transitions in a two-level system with broadband absorption, Physical Review A, 80, 4, (2009)
  • [9] Singha S., Hu Z., Gordon R.J., Closed loop coherent control of electronic transitions in gallium arsenide, The Journal of Physical Chemistry A, 115, 23, pp. 6093-6101, (2011)
  • [10] Chu S.S., Wang S.F., Deng Y.K., Et al., Optimizing two-photon fluorescence of coumarin dye by combined temporal-spatial pulse shaping, Optics Communications, 284, 16, pp. 4070-4072, (2011)