The collective oscillation of conduction electrons, responsible for the localized surface plasmon resonances, enables engineering nanomaterials by tuning their optical response from the visible to terahertz as a function of nanostructure size, shape, and environment. While theoretical calculations helped tremendously in understanding plasmonic nanomaterials and optimizing their light matter interaction, only a few experimental techniques are available to study these materials with high spatial resolution. In this work, the photothermal-induced resonance (PTIR) technique is applied for the first time to image the dark plasmonic resonance of gold asymmetric split ring resonators (A-SRRs) in the mid-infrared (IR) spectral region with nanoscale...
Semicontinuous metal films (SMFs) have been studied for several decades due to their unique optical ...
Understanding light-matter interaction at the nanoscale requires probing the optical properties of m...
High-density and long-lived plasmonic hot-spots are an ideal system for high-sensitive surface-enhan...
The photothermal induced resonance (PTIR) method measures the near-field absorption in gold plasmoni...
The photothermal induced resonance (PTIR) method measures the near-field absorption in gold plasmoni...
The photothermal induced resonance (PTIR) method measures the near‐field absorption in gold plasmoni...
Metal nanoarchitectures producing optical responses in the visible and near-infrared form the founda...
Surface-enhanced infrared absorption (SEIRA) spectroscopy exploits the locally enhanced field surrou...
Plasmonic resonances are characterized by enhanced optical near field and subwavelength power conf...
Photothermal induced resonance (PTIR) has recently attracted great interest for enabling chemical id...
Photothermal induced resonance (PTIR), also known as AFM-IR, is a scanning probe technique that prov...
Photothermal induced resonance (PTIR) is a new technique which combines the chemical specificity of ...
Photothermal induced resonance (PTIR), also known as AFM-IR, enables nanoscale infrared (IR) imaging...
Understanding light-matter interaction at the nanoscale requires probing the optical properties of m...
In this paper, we report on the manipulation of the near-field coupling in individual gold nanoanten...
Semicontinuous metal films (SMFs) have been studied for several decades due to their unique optical ...
Understanding light-matter interaction at the nanoscale requires probing the optical properties of m...
High-density and long-lived plasmonic hot-spots are an ideal system for high-sensitive surface-enhan...
The photothermal induced resonance (PTIR) method measures the near-field absorption in gold plasmoni...
The photothermal induced resonance (PTIR) method measures the near-field absorption in gold plasmoni...
The photothermal induced resonance (PTIR) method measures the near‐field absorption in gold plasmoni...
Metal nanoarchitectures producing optical responses in the visible and near-infrared form the founda...
Surface-enhanced infrared absorption (SEIRA) spectroscopy exploits the locally enhanced field surrou...
Plasmonic resonances are characterized by enhanced optical near field and subwavelength power conf...
Photothermal induced resonance (PTIR) has recently attracted great interest for enabling chemical id...
Photothermal induced resonance (PTIR), also known as AFM-IR, is a scanning probe technique that prov...
Photothermal induced resonance (PTIR) is a new technique which combines the chemical specificity of ...
Photothermal induced resonance (PTIR), also known as AFM-IR, enables nanoscale infrared (IR) imaging...
Understanding light-matter interaction at the nanoscale requires probing the optical properties of m...
In this paper, we report on the manipulation of the near-field coupling in individual gold nanoanten...
Semicontinuous metal films (SMFs) have been studied for several decades due to their unique optical ...
Understanding light-matter interaction at the nanoscale requires probing the optical properties of m...
High-density and long-lived plasmonic hot-spots are an ideal system for high-sensitive surface-enhan...