Fluorescence, that is, spontaneous emission, is generally more sensitive than absorption measurement, and is widely used in optical imaging. However, many chromophores, such as haemoglobin and cytochromes, absorb but have undetectable fluorescence because the spontaneous emission is dominated by their fast non-radiative decay. Yet the detection of their absorption is difficult under a microscope. Here we use stimulated emission, which competes effectively with the nonradiative decay, to make the chromophores detectable, and report a new contrast mechanism for optical microscopy. In a pump–probe experiment, on photoexcitation by a pump pulse, the sample is stimulated down to the ground state by a time-delayed probe pulse, the intensity of wh...
The combination of optical microscopy and ultrafast spectroscopy make the spatial characterization o...
AbstractA video-rate (30 frames/s) scanning two-photon excitation microscope has been successfully t...
For centuries, optical microscopy has greatly facilitated our observation and understanding of micro...
Fluorescence, that is, spontaneous emission, is generally more sensitive than absorption measurement...
Advances in bioimaging have revolutionized our ability to study life phenomena at a microscopic scal...
AbstractWe have implemented continuous-wave two-photon excitation of near-UV absorbing fluorophores ...
Many chromophores absorb light intensely but have undetectable fluorescence. Hence microscopy techni...
Multiphoton microscopy is becoming a popular mode of live and fixed cell imaging. This mode of imagi...
We have implemented continuous-wave two-photon excitation of near-UV absorbing fluorophores in a sca...
Two-photon fluorescence microscopy has become an indispensable tool for imaging scattering biologica...
Fluorescence microscopy has profoundly changed cell and molecular biology studies by permitting tagg...
In fluorophores, the excited state lifetime can be modulated using pump-probe excitation. By generat...
The stimulated emission process has been rarely exploited in spectroscopy and microscopy. Instead, a...
We present the implementation of intensity-modulated laser diodes for applications in frequency-doma...
In fluorophores, the excited state lifetime can be modulated using pump-probe excitation. By generat...
The combination of optical microscopy and ultrafast spectroscopy make the spatial characterization o...
AbstractA video-rate (30 frames/s) scanning two-photon excitation microscope has been successfully t...
For centuries, optical microscopy has greatly facilitated our observation and understanding of micro...
Fluorescence, that is, spontaneous emission, is generally more sensitive than absorption measurement...
Advances in bioimaging have revolutionized our ability to study life phenomena at a microscopic scal...
AbstractWe have implemented continuous-wave two-photon excitation of near-UV absorbing fluorophores ...
Many chromophores absorb light intensely but have undetectable fluorescence. Hence microscopy techni...
Multiphoton microscopy is becoming a popular mode of live and fixed cell imaging. This mode of imagi...
We have implemented continuous-wave two-photon excitation of near-UV absorbing fluorophores in a sca...
Two-photon fluorescence microscopy has become an indispensable tool for imaging scattering biologica...
Fluorescence microscopy has profoundly changed cell and molecular biology studies by permitting tagg...
In fluorophores, the excited state lifetime can be modulated using pump-probe excitation. By generat...
The stimulated emission process has been rarely exploited in spectroscopy and microscopy. Instead, a...
We present the implementation of intensity-modulated laser diodes for applications in frequency-doma...
In fluorophores, the excited state lifetime can be modulated using pump-probe excitation. By generat...
The combination of optical microscopy and ultrafast spectroscopy make the spatial characterization o...
AbstractA video-rate (30 frames/s) scanning two-photon excitation microscope has been successfully t...
For centuries, optical microscopy has greatly facilitated our observation and understanding of micro...