Measurement of photoinduced mechanical responses by atomic force microscopy (AFM) because of sample infrared resonances enables chemical-sensitive microscopy with spatial resolution orders of magnitude better than the optical diffraction limit. However, the origin of noncontact photoinduced force between the AFM tip and the samples of infrared resonances is still under debate. To investigate its origin, we implemented synchronized infrared pulse excitation and mechanical detection with a stationary cantilever of AFM in the peak force tapping mode. An attractive photoinduced force at nanonewton level between the AFM tip and the sample is observed. A spectral profile of the force corresponds to the infrared absorption of the sample. To interp...
Infrared photoinduced force microscopy (IR-PiFM) is a scanning probe spectroscopic technique that ma...
Advances in nanotechnology have increased the need for tools to characterize a wide variety of nanom...
We investigate the tip-enhanced thermal expansion force for nanoscale chemical imaging and spectrosc...
Control of photoinduced forces allows nanoparticle manipulation, atom trapping, and fundamental stud...
When light illuminates the junction formed between a sharp metal tip and a sample, different mechani...
When light illuminates the junction formed between a sharp metal tip and a sample, different mechani...
Near-field spectroscopic imaging techniques offer a non-perturbative, molecular contrast for charact...
Photo-induced force microscopy is a novel technique where mechanical detection with a cantilevered p...
The quest to beat the diffraction limit and map sample optical properties with nanoscale spatial res...
The quest to beat the diffraction limit and map sample optical properties with nanoscale spatial res...
Nanoscale topological imaging using atomic force microscopy (AFM) combined with infrared (IR) spectr...
When light illuminates the junction formed between a sharp metal tip and a sample, different mechani...
The objective of this dissertation is to develop a novel method to measure nanoscale optical field d...
The objective of this dissertation is to develop a novel method to measure nanoscale optical field d...
Photothermal induced resonance (PTIR) is a new technique which combines the chemical specificity of ...
Infrared photoinduced force microscopy (IR-PiFM) is a scanning probe spectroscopic technique that ma...
Advances in nanotechnology have increased the need for tools to characterize a wide variety of nanom...
We investigate the tip-enhanced thermal expansion force for nanoscale chemical imaging and spectrosc...
Control of photoinduced forces allows nanoparticle manipulation, atom trapping, and fundamental stud...
When light illuminates the junction formed between a sharp metal tip and a sample, different mechani...
When light illuminates the junction formed between a sharp metal tip and a sample, different mechani...
Near-field spectroscopic imaging techniques offer a non-perturbative, molecular contrast for charact...
Photo-induced force microscopy is a novel technique where mechanical detection with a cantilevered p...
The quest to beat the diffraction limit and map sample optical properties with nanoscale spatial res...
The quest to beat the diffraction limit and map sample optical properties with nanoscale spatial res...
Nanoscale topological imaging using atomic force microscopy (AFM) combined with infrared (IR) spectr...
When light illuminates the junction formed between a sharp metal tip and a sample, different mechani...
The objective of this dissertation is to develop a novel method to measure nanoscale optical field d...
The objective of this dissertation is to develop a novel method to measure nanoscale optical field d...
Photothermal induced resonance (PTIR) is a new technique which combines the chemical specificity of ...
Infrared photoinduced force microscopy (IR-PiFM) is a scanning probe spectroscopic technique that ma...
Advances in nanotechnology have increased the need for tools to characterize a wide variety of nanom...
We investigate the tip-enhanced thermal expansion force for nanoscale chemical imaging and spectrosc...