Optimizing single-nanoparticle two-photon microscopy by in situ adaptive control of femtosecond pulses

Single-nanoparticle two-photon microscopy shows great application potential in super-resolution cell imaging. Here, we report in situ adaptive optimization of single-nanoparticle two-photon luminescence signals by phase and polarization modulations of broadband laser pulses. For polarization-indepen...

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Veröffentlicht in:Applied physics letters 2016-07, Vol.109 (2)
Hauptverfasser: Li, Donghai, Deng, Yongkai, Chu, Saisai, Jiang, Hongbing, Wang, Shufeng, Gong, Qihuang
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Sprache:eng
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Zusammenfassung:Single-nanoparticle two-photon microscopy shows great application potential in super-resolution cell imaging. Here, we report in situ adaptive optimization of single-nanoparticle two-photon luminescence signals by phase and polarization modulations of broadband laser pulses. For polarization-independent quantum dots, phase-only optimization was carried out to compensate the phase dispersion at the focus of the objective. Enhancement of the two-photon excitation fluorescence intensity under dispersion-compensated femtosecond pulses was achieved. For polarization-dependent single gold nanorod, in situ polarization optimization resulted in further enhancement of two-photon photoluminescence intensity than phase-only optimization. The application of in situ adaptive control of femtosecond pulse provides a way for object-oriented optimization of single-nanoparticle two-photon microscopy for its future applications.
ISSN:0003-6951
1077-3118
DOI:10.1063/1.4958617