Super-resolution optical microscopy is opening a new window to unveil the unseen details on the nanoscopic scale. Current far-field super-resolution techniques rely on fluorescence as the read-out1-5. Here, we demonstrate a scheme for breaking the diffraction limit in far-field imaging of non-fluorescent species by using spatially controlled saturation of electronic absorption. Our method is based on a pump-probe process where a modulated pump field perturbs the charge-carrier density in a sample, thus modulating the transmission of a probe field. A doughnut shape laser beam is then added to transiently saturate the electronic transition in the periphery of the focal volume, thus the induced modulation in the sequential probe pulse only occ...
We report on two modalities of lens-based fluorescence microscopy with diffraction-unlimited resolu...
Compared with other imaging techniques, fluorescence microscopy has become an essential tool to stud...
National Natural Science Foundation of China [51172253, 61137002]The resolution of far-field optical...
Super-resolution optical microscopy is opening a new window to unveil the unseen details on the nano...
Super-resolution optical microscopy is providing a new means by which to view as yet unseen details ...
Super-resolution optical microscopy is opening a new window to unveil the unseen details on the nano...
Super-resolution optical microscopy is opening a new window to unveil the unseen details on the nano...
Progress in the emerging areas of science and technology, such as bio- and nano-technologies, depend...
In this paper, we present a method to perform super-resolution label-free optical microscopy by mean...
Nanoscopic imaging or characterizing is the mainstay of the development of advanced materials. Despi...
We demonstrate far-field optical imaging at the nanoscale with unlabeled samples. Subdiffraction res...
Abstract The resolution of fluorescence microscopy had traditionally been lim-ited to ~200–300 nm du...
ABSTRACT We demonstrate far-field optical imaging at the nanoscale with unlabeled samples. Subdiffra...
Label-free absorption spectroscopies are frontline techniques to reveal the spectral fingerprint, co...
For quite a long time, people thought of the diffraction limit of light as a fundamental unbreakable...
We report on two modalities of lens-based fluorescence microscopy with diffraction-unlimited resolu...
Compared with other imaging techniques, fluorescence microscopy has become an essential tool to stud...
National Natural Science Foundation of China [51172253, 61137002]The resolution of far-field optical...
Super-resolution optical microscopy is opening a new window to unveil the unseen details on the nano...
Super-resolution optical microscopy is providing a new means by which to view as yet unseen details ...
Super-resolution optical microscopy is opening a new window to unveil the unseen details on the nano...
Super-resolution optical microscopy is opening a new window to unveil the unseen details on the nano...
Progress in the emerging areas of science and technology, such as bio- and nano-technologies, depend...
In this paper, we present a method to perform super-resolution label-free optical microscopy by mean...
Nanoscopic imaging or characterizing is the mainstay of the development of advanced materials. Despi...
We demonstrate far-field optical imaging at the nanoscale with unlabeled samples. Subdiffraction res...
Abstract The resolution of fluorescence microscopy had traditionally been lim-ited to ~200–300 nm du...
ABSTRACT We demonstrate far-field optical imaging at the nanoscale with unlabeled samples. Subdiffra...
Label-free absorption spectroscopies are frontline techniques to reveal the spectral fingerprint, co...
For quite a long time, people thought of the diffraction limit of light as a fundamental unbreakable...
We report on two modalities of lens-based fluorescence microscopy with diffraction-unlimited resolu...
Compared with other imaging techniques, fluorescence microscopy has become an essential tool to stud...
National Natural Science Foundation of China [51172253, 61137002]The resolution of far-field optical...