We demonstrate a new, label-free, far-field super-resolution method based on an ultrafast pump–probe scheme oriented toward nanomaterial imaging. A focused pump laser excites a diffraction-limited spatial temperature profile, and the nonlinear changes in reflectance are probed. Enhanced spatial resolution is demonstrated with nanofabricated silicon and vanadium dioxide nanostructures. Using an air objective, resolution of 105 nm was achieved, well beyond the diffraction limit for the pump and probe beams and offering a novel kind of dedicated nanoscopy for materials
Ultrafast laser processing can induce surface nanostructurating (SNS) in most materials with dimensi...
International audienceUltrafast lasers are now unanimously recognized as processing tools capable of...
We have demonstrated near-wavelength resolution microscopy in the extreme ultraviolet. Images of 50 ...
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, depen...
Super-resolution optical microscopy is providing a new means by which to view as yet unseen details ...
This thesis presents theoretical and experimental demonstrations of using hyperbolic metamaterial il...
In this paper, we present a method to perform super-resolution label-free optical microscopy by mean...
This book presents the advances in super-resolution microscopy in physics and biomedical optics for ...
Unlabeled super-resolution is the next grand challenge in imaging. Stimulated emission depletion and...
Super-resolution optical microscopy is opening a new window to unveil the unseen details on the nano...
In this paper we present our recent progress on far-field super-resolution enabled nanofabrication i...
Abstract. Optical super resolution is one of the most applicable as well as scientifically exciting ...
We propose and implement a far-field spectroscopic system for imaging below the diffraction limit wi...
Ultrafast laser processing can induce surface nanostructurating (SNS) in most materials with dimensi...
International audienceUltrafast lasers are now unanimously recognized as processing tools capable of...
We have demonstrated near-wavelength resolution microscopy in the extreme ultraviolet. Images of 50 ...
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, depen...
Super-resolution optical microscopy is providing a new means by which to view as yet unseen details ...
This thesis presents theoretical and experimental demonstrations of using hyperbolic metamaterial il...
In this paper, we present a method to perform super-resolution label-free optical microscopy by mean...
This book presents the advances in super-resolution microscopy in physics and biomedical optics for ...
Unlabeled super-resolution is the next grand challenge in imaging. Stimulated emission depletion and...
Super-resolution optical microscopy is opening a new window to unveil the unseen details on the nano...
In this paper we present our recent progress on far-field super-resolution enabled nanofabrication i...
Abstract. Optical super resolution is one of the most applicable as well as scientifically exciting ...
We propose and implement a far-field spectroscopic system for imaging below the diffraction limit wi...
Ultrafast laser processing can induce surface nanostructurating (SNS) in most materials with dimensi...
International audienceUltrafast lasers are now unanimously recognized as processing tools capable of...
We have demonstrated near-wavelength resolution microscopy in the extreme ultraviolet. Images of 50 ...