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卫健学术沙龙:人口层面的生命伦理学——对公众健康三十五年的贡献
Electrocatalysis for Energy Conversion and Storage
Pushing the boundary?of chemical syntheses of glycans and glycoconjugates
“清美”沙龙 :记忆冲撞
报告题目:
Optical Multi-Dimensional Coherent Spectroscopy
 报告人:
Steven T. Cundiff
JILA, National Institute of Standards and 
Technology and University of Colorado
报告时间:
2014-03-26 10:00
报告地点:
精仪系四楼大会议室
主办单位:
精密仪器系
  简介:
报告简介: The concept of multidimensional Fourier transform spectroscopy originated in NMR where it enabled the determination of molecular structure.  In either NMR or optics, a sample is excited by a series of pulses. The key concept is to correlate what happens during multiple time periods between pulses by taking a multidimensional Fourier transform. The presence of a correlation, which is manifest as an off-diagonal peak in the resulting multidimensional spectrum, indicates that the corresponding resonances  are coupled. Migrating multidimensional Fourier transform spectroscopy to the infrared and visible regimes is difficult because of the need to obtain full phase information about the emitted signal and for the phase difference between the excitation pulses to be stable and precisely incremented. I will give an introduction to optical two-dimensional coherent spectroscopy, using an atomic vapor as simple test system, but also show unexpected results due to atomic interactions. By extending the method into a 3rd dimension, it is possible to determine the Hamiltonian of an atomic vapor. I will then present our use of it to study optical resonances in semiconductor nanostructures. In quantum wells, our results show that many-body effects dominate the light-matter interaction for excitons in semiconductors and provide a rigorous and quantitative test of the theory.  In quantum dots, there is inhomogeneous broadening due to size dispersion, however two-dimensional coherent spectroscopy can make size-resolved measurements without the need to isolate individual quantum dots.
报告人简介:Steven T. Cundiff  is a Fellow of JILA, a Physicist with the NIST Quantum Physics Division and a Professor Adjoint in the University of Colorado Department of Physics and Electrical and Computer Engineering Department. He is a Fellow of the Optical Society of America, the American Physical Society and the Institute of Electrical and Electronics Engineers. He received a Humboldt Research Award in 2010 and the Meggers Award from the Optical Society of America in 2011.
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