A method using single fiber reflectance spectroscopy to measure the refractive indices of transparent and turbid media over a broad wavelength range is presented and tested. For transparent liquid samples, the accuracy is within 0.2%, and the accuracy increases with increasing wavelength. For liquid turbid media, the accuracy is within 0.3% and increases with decreasing wavelength. For solid turbid samples, such as human skin, the accuracy critically depends on the optical contact between the fiber and sample surface. It is demonstrated that this technique has the potential to measure refractive indices of biological tissue in vivo
We present a compact, fast, and versatile fiber-optic probe system for real-time determination of ti...
A new experimental technique is proposed to determine refractive indices of liquids and isotropic so...
textabstractMulti-diameter single fiber reflectance (MDSFR) spectroscopy enables quantitative measur...
Abstract: We demonstrate direct measurements of local refractive index contrast using a scanning opt...
In this investigation, we propose and experimentally demonstrate a method for measuring the refracti...
We proposed and experimentally demonstrated a fast and simple technique to measure refractive index ...
A method for routine, but precise measurements of refractive index is described. The method is fast ...
Recent focused Monte Carlo and experimental studies on steady-state single-fiber reflectance spectro...
This paper presents a relationship between the intensity collected by a single fiber reflectance dev...
A new approach to measure the refractive index of a given material, in its whole transparency window...
Simple and low cost optical fiber sensors are found to be useful in small and large scale chemical a...
Multiple diameter single fiber reflectance (MDSFR) measurements of turbid media can be used to deter...
This chapter presents methods for measuring the refractive index (RI) of biological tissues and bloo...
The current interest in the subject of fiber optics has brought about, among its many achievements, ...
The optical properties can differentiate biological tissues. Refractive index (RI) is one of the opt...
We present a compact, fast, and versatile fiber-optic probe system for real-time determination of ti...
A new experimental technique is proposed to determine refractive indices of liquids and isotropic so...
textabstractMulti-diameter single fiber reflectance (MDSFR) spectroscopy enables quantitative measur...
Abstract: We demonstrate direct measurements of local refractive index contrast using a scanning opt...
In this investigation, we propose and experimentally demonstrate a method for measuring the refracti...
We proposed and experimentally demonstrated a fast and simple technique to measure refractive index ...
A method for routine, but precise measurements of refractive index is described. The method is fast ...
Recent focused Monte Carlo and experimental studies on steady-state single-fiber reflectance spectro...
This paper presents a relationship between the intensity collected by a single fiber reflectance dev...
A new approach to measure the refractive index of a given material, in its whole transparency window...
Simple and low cost optical fiber sensors are found to be useful in small and large scale chemical a...
Multiple diameter single fiber reflectance (MDSFR) measurements of turbid media can be used to deter...
This chapter presents methods for measuring the refractive index (RI) of biological tissues and bloo...
The current interest in the subject of fiber optics has brought about, among its many achievements, ...
The optical properties can differentiate biological tissues. Refractive index (RI) is one of the opt...
We present a compact, fast, and versatile fiber-optic probe system for real-time determination of ti...
A new experimental technique is proposed to determine refractive indices of liquids and isotropic so...
textabstractMulti-diameter single fiber reflectance (MDSFR) spectroscopy enables quantitative measur...