报告摘要:The control of quantum dynamics with shaped electromagnetic
fields is a burgeoning subject with many successful experiments. These
positive results may be understood upon consideration of three
assumptions: (i) the system is controllable, (ii) the
control-‐to-‐state map is full rank and (iii) no significant
constraints are placed on the control resources. Upon satisfaction of
these assumptions, it follows that suitable algorithms may guide the
search for control resources, in an unimpeded fashion, to reach the
maximum attainable yield. This observation, drawn from quantum control,
has analogues in other areas of science where system manipulation is
pervasive, although different control resources are typically utilized.
Building on the foundations learned from quantum control, the
presentation will consider analogous behavior in other areas of science.
The analysis naturally leads to some questions and speculation on the
significance of these findings.
报告人简历:Professor Herschel Rabitz's research consists of coordinated
theoretical and experimental activities in the general domains of
physical chemistry and systems biology. A central component of his
research concerns the active control of chemical processes through the
introduction of suitable shaped laser pulses, and this theoretical
activity is tightly linked with the laboratory program. The primary
laboratory component of his research is in the area of controlling
quantum dynamics phenomena using shaped ultrafast laser pulses. In
addition, theoretical research is underway in systems biology to provide
algorithms for the analysis of bionetworks and to guide experiments for
the re-engineering of such networks and their functions.
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