By applying an external electric field, we have studied the de Stark shifts at the two states of a low-temperature single-molecule optical switch. We observe a reversible change from a mainly quadratic field dependence to a linear field dependence. The data analysis provides the S-1 -S-0 dipole moment and polarizability differences of both the original and photoproduct state. On the basis of these data, a detailed microscopic scenario for the underlying nonphotochemical hole burning mechanism is discussed.
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Univ Georgia, Coll Engn & Nanoscale Sci, Single Mol Study Lab, Athens, GA 30605 USA
Univ Georgia, Ctr Engn, Athens, GA 30605 USAUniv Georgia, Coll Engn & Nanoscale Sci, Single Mol Study Lab, Athens, GA 30605 USA
Wang, Bin
Lou, Zhichao
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Univ Georgia, Coll Engn & Nanoscale Sci, Single Mol Study Lab, Athens, GA 30605 USA
Univ Georgia, Ctr Engn, Athens, GA 30605 USA
Nanjing Univ Aeronaut & Astronaut, Coll Mat Sci & Technol, Nanjing 210016, Jiangsu, Peoples R ChinaUniv Georgia, Coll Engn & Nanoscale Sci, Single Mol Study Lab, Athens, GA 30605 USA
Lou, Zhichao
Zhang, Haiqian
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Nanjing Univ Aeronaut & Astronaut, Coll Mat Sci & Technol, Nanjing 210016, Jiangsu, Peoples R ChinaUniv Georgia, Coll Engn & Nanoscale Sci, Single Mol Study Lab, Athens, GA 30605 USA
Zhang, Haiqian
Xu, Bingqian
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Univ Georgia, Coll Engn & Nanoscale Sci, Single Mol Study Lab, Athens, GA 30605 USA
Univ Georgia, Ctr Engn, Athens, GA 30605 USAUniv Georgia, Coll Engn & Nanoscale Sci, Single Mol Study Lab, Athens, GA 30605 USA