AbstractTwo-photon probe excitation data are commonly presented as absorption cross section or molecular brightness (the detected fluorescence rate per molecule). We report two-photon molecular brightness spectra for a diverse set of organic and genetically encoded probes with an automated spectroscopic system based on fluorescence correlation spectroscopy. The two-photon action cross section can be extracted from molecular brightness measurements at low excitation intensities, while peak molecular brightness (the maximum molecular brightness with increasing excitation intensity) is measured at higher intensities at which probe photophysical effects become significant. The spectral shape of these two parameters was similar across all dye fa...
Fluorescence spectroscopic measurements at the single-molecule level usually require large absorptio...
Fluorescence spectroscopic measurements at the single-molecule level usually require large absorptio...
Recent, cooperative advances in chemistry, biology, computing, photophysics, optics, and microelectr...
AbstractTwo-photon probe excitation data are commonly presented as absorption cross section or molec...
As optical microscopy techniques continue to improve, most notably the development of super-resoluti...
© 2011 Optical Society of AmericaThe definitive version of this paper is available at: http://dx.do...
Non-degenerate two-photon excitation (ND-TPE) has been explored in two-photon excitation microscopy....
Fluorescent probes are essential tools for studying biological systems. The last decade has witnesse...
The combination of two two-photon-induced processes in a F\uf6rster resonance energy transfer (FRET)...
This project explores optimization of two-photon excited fluorescence (TPEF) enhancement between tun...
Fluorescent nucleobase analogues (FBAs) have many desirable features in comparison to extrinsic fluo...
Fluorescent probes are essential tools for studying biological systems. The last decade has witnesse...
We have studied the wavelength-dependence of the two-photon excitation efficiency for a number of co...
We have studied the wavelength-dependence of the two-photon excitation efficiency for a number of co...
This review is concerned with two-photon excited fluorescence microscopy (2PE) and related technique...
Fluorescence spectroscopic measurements at the single-molecule level usually require large absorptio...
Fluorescence spectroscopic measurements at the single-molecule level usually require large absorptio...
Recent, cooperative advances in chemistry, biology, computing, photophysics, optics, and microelectr...
AbstractTwo-photon probe excitation data are commonly presented as absorption cross section or molec...
As optical microscopy techniques continue to improve, most notably the development of super-resoluti...
© 2011 Optical Society of AmericaThe definitive version of this paper is available at: http://dx.do...
Non-degenerate two-photon excitation (ND-TPE) has been explored in two-photon excitation microscopy....
Fluorescent probes are essential tools for studying biological systems. The last decade has witnesse...
The combination of two two-photon-induced processes in a F\uf6rster resonance energy transfer (FRET)...
This project explores optimization of two-photon excited fluorescence (TPEF) enhancement between tun...
Fluorescent nucleobase analogues (FBAs) have many desirable features in comparison to extrinsic fluo...
Fluorescent probes are essential tools for studying biological systems. The last decade has witnesse...
We have studied the wavelength-dependence of the two-photon excitation efficiency for a number of co...
We have studied the wavelength-dependence of the two-photon excitation efficiency for a number of co...
This review is concerned with two-photon excited fluorescence microscopy (2PE) and related technique...
Fluorescence spectroscopic measurements at the single-molecule level usually require large absorptio...
Fluorescence spectroscopic measurements at the single-molecule level usually require large absorptio...
Recent, cooperative advances in chemistry, biology, computing, photophysics, optics, and microelectr...