Detecting single molecules without labels or capture probes is of great interest for both medical applications and scientific research. Frequency-locked microtoroid optical resonators are capable of label-free single molecule detection, however, this approach requires a priori knowledge of the molecule to be detected as well as surface functionalization of the cavity. Optical frequency microcombs can be a precise source of spectral information on molecules, however, microcombs have not been generated in an aqueous biological sensing environments due to altered dispersion, coupling instability, and reduced quality factor of the resonator. Here we suggest a way toward single-molecule spectroscopy by demonstrating frequency comb generation in ...
Spherical microresonators have been demonstrated to be potential label-free tools for identifying ch...
Asymmetric microsphere resonant cavities (ARCs) allow for free-space coupling to high quality (Q) wh...
The method of using opto-mechanical interactions to detect and predict the concentration or type of ...
The ability to detect and identify molecules at high sensitivity without the use of labels or captur...
The ability to detect and identify molecules at high sensitivity without the use of labels or captur...
Detecting small concentrations of molecules down to the single molecule limit has impact on areas su...
Single-molecule detection is one of the fundamental challenges of modern biology. Such experiments o...
Current single-molecule detection techniques require labeling the target molecule. We report a highl...
Optical whispering gallery mode (WGM) microcavities have drawn attentions in various types of sensin...
Optical Whispering gallery mode (WGM) microresonators, which benefit from an ultra-high quality (Q) ...
Being able to detect a single molecule without the use of labels has been a long standing goal of bi...
A micron sized glass sphere is able to confine light to its interior volume. The trapped light descr...
Whispering gallery mode resonances in liquid droplets and microspheres have attracted considerable a...
The development of a spectroscopy device on a chip that could realize real-time, label-free and high...
2014-11-03The ability to detect specific molecules in solution is critical for a variety of applicat...
Spherical microresonators have been demonstrated to be potential label-free tools for identifying ch...
Asymmetric microsphere resonant cavities (ARCs) allow for free-space coupling to high quality (Q) wh...
The method of using opto-mechanical interactions to detect and predict the concentration or type of ...
The ability to detect and identify molecules at high sensitivity without the use of labels or captur...
The ability to detect and identify molecules at high sensitivity without the use of labels or captur...
Detecting small concentrations of molecules down to the single molecule limit has impact on areas su...
Single-molecule detection is one of the fundamental challenges of modern biology. Such experiments o...
Current single-molecule detection techniques require labeling the target molecule. We report a highl...
Optical whispering gallery mode (WGM) microcavities have drawn attentions in various types of sensin...
Optical Whispering gallery mode (WGM) microresonators, which benefit from an ultra-high quality (Q) ...
Being able to detect a single molecule without the use of labels has been a long standing goal of bi...
A micron sized glass sphere is able to confine light to its interior volume. The trapped light descr...
Whispering gallery mode resonances in liquid droplets and microspheres have attracted considerable a...
The development of a spectroscopy device on a chip that could realize real-time, label-free and high...
2014-11-03The ability to detect specific molecules in solution is critical for a variety of applicat...
Spherical microresonators have been demonstrated to be potential label-free tools for identifying ch...
Asymmetric microsphere resonant cavities (ARCs) allow for free-space coupling to high quality (Q) wh...
The method of using opto-mechanical interactions to detect and predict the concentration or type of ...