Biosensing relies on the detection of molecules and their specific interactions. It is therefore highly desirable to develop transducers exhibiting ultimate detection limits. Microcavities are an exemplary candidate technology for demonstrating such a capability in the optical domain and in a label-free fashion. Additional sensitivity gains, achievable by exploiting plasmon resonances, promise biosensing down to the single-molecule level. Here, we introduce a biosensing platform using optical microcavity-based sensors that exhibits single-molecule sensitivity and is selective to specific single binding events. Whispering gallery modes in glass microspheres are used to leverage plasmonic enhancements in gold nanorods for the specific detecti...
High quality factor whispering gallery mode microresonators have been recently shown to exhibit dete...
Optical microcavities that confine light in high-Q resonance promise all of the capabilities require...
Plasmon resonance biosensors provide ultimate sensitivity at the single-molecule level. This sensiti...
Biosensing relies on the detection of molecules and their specific interactions. It is therefore hig...
Detecting molecules and their interactions lies at the heart of all biosensor devices, which have im...
We have developed a label-free microcavity biosensing platform that is capable of monitoring single ...
A microcavity biosensor monitors optical resonances in micro-and nanostrucrtures for label-free dete...
Current single-molecule detection techniques require labeling the target molecule. We report a highl...
Quantifying the interactions between biomolecules combined with discovering their structure provides...
AbstractWe have developed a novel, spectroscopic technique for high-sensitivity, label-free DNA quan...
Microcavity biosensors derive their sensitivity from monitoring frequency shifts induced by protein ...
ABSTRACT We have developed a novel, spectroscopic technique for high-sensitivity, label-free DNA qua...
ABSTRACT We have developed a novel, spectroscopic technique for high-sensitivity, label-free DNA qua...
This is the final version. Available on open access from the American Physical Society via the DOI i...
Optical microcavities that confine light in high-Q resonance promise all of the capabilities require...
High quality factor whispering gallery mode microresonators have been recently shown to exhibit dete...
Optical microcavities that confine light in high-Q resonance promise all of the capabilities require...
Plasmon resonance biosensors provide ultimate sensitivity at the single-molecule level. This sensiti...
Biosensing relies on the detection of molecules and their specific interactions. It is therefore hig...
Detecting molecules and their interactions lies at the heart of all biosensor devices, which have im...
We have developed a label-free microcavity biosensing platform that is capable of monitoring single ...
A microcavity biosensor monitors optical resonances in micro-and nanostrucrtures for label-free dete...
Current single-molecule detection techniques require labeling the target molecule. We report a highl...
Quantifying the interactions between biomolecules combined with discovering their structure provides...
AbstractWe have developed a novel, spectroscopic technique for high-sensitivity, label-free DNA quan...
Microcavity biosensors derive their sensitivity from monitoring frequency shifts induced by protein ...
ABSTRACT We have developed a novel, spectroscopic technique for high-sensitivity, label-free DNA qua...
ABSTRACT We have developed a novel, spectroscopic technique for high-sensitivity, label-free DNA qua...
This is the final version. Available on open access from the American Physical Society via the DOI i...
Optical microcavities that confine light in high-Q resonance promise all of the capabilities require...
High quality factor whispering gallery mode microresonators have been recently shown to exhibit dete...
Optical microcavities that confine light in high-Q resonance promise all of the capabilities require...
Plasmon resonance biosensors provide ultimate sensitivity at the single-molecule level. This sensiti...