The experimental study of cooling by anti-Stokes fluorescence in a fiber or a radiation-balanced fiber laser necessitates the development of a sensor that can measure the temperature of the fiber core with an excellent temperature and spatial resolution, a large dynamic range, a small drift, a fast response, and a low absorptive loss. We report an in-situ slow-light fiber sensor written directly in a Yb-doped silica fiber using a femtosecond laser. The sensor has a spatial resolution of 6.5 mm, an excellent measured temperature resolution of 0.9 m°C/ √Hz, and a measured drift as low as 20 m°C/min. One of the grating\u27s slow-light resonances is interrogated with a tunable 1.55-µm laser to measure the temperature-induced shift in the resona...
The fluorescence intensity ratio technique for optical fiber-based point temperature sensing is revi...
We investigate the thermal characteristics of a polymer-clad fiber laser under natural convection wh...
Combining the benefits of photothermal conversion in a doped optical fiber with the principle of Fib...
This Letter reports a slow-light fiber Bragg grating (FBG) temperature sensor with a record temperat...
In this paper, a high-resolution fiber temperature sensor is proposed and demonstrated using the fre...
We report a comprehensive model that quantifies analytically and numerically the heat that can be ex...
An all-optical fiber temperature sensor fabricated by a femtosecond (fs) laser is proposed in this s...
A fluorescence based fiber-optic temperature sensor is demonstrated using a modulated pump laser in ...
In this paper, a high-resolution fiber temperature sensor is proposed and demonstrated using the fre...
We analyze numerically the use of a tapered Yb-doped fiber to explore the temperature response of fi...
We use a comprehensive model of cooling by anti-Stokes fluorescence in a single-mode fiber that incl...
This dissertation presents the development of temperature sensors which employ a fiber-optic probe c...
In optically pumped lasers, heat generated by the quantum defect causes detrimental fluctuations in ...
We demonstrate a new approach to high temperature sensing using femtosecond laser ablation gratings ...
A temperature fiber sensor based on tapered fiber Bragg grating (tapered FBG) fabricated by femtosec...
The fluorescence intensity ratio technique for optical fiber-based point temperature sensing is revi...
We investigate the thermal characteristics of a polymer-clad fiber laser under natural convection wh...
Combining the benefits of photothermal conversion in a doped optical fiber with the principle of Fib...
This Letter reports a slow-light fiber Bragg grating (FBG) temperature sensor with a record temperat...
In this paper, a high-resolution fiber temperature sensor is proposed and demonstrated using the fre...
We report a comprehensive model that quantifies analytically and numerically the heat that can be ex...
An all-optical fiber temperature sensor fabricated by a femtosecond (fs) laser is proposed in this s...
A fluorescence based fiber-optic temperature sensor is demonstrated using a modulated pump laser in ...
In this paper, a high-resolution fiber temperature sensor is proposed and demonstrated using the fre...
We analyze numerically the use of a tapered Yb-doped fiber to explore the temperature response of fi...
We use a comprehensive model of cooling by anti-Stokes fluorescence in a single-mode fiber that incl...
This dissertation presents the development of temperature sensors which employ a fiber-optic probe c...
In optically pumped lasers, heat generated by the quantum defect causes detrimental fluctuations in ...
We demonstrate a new approach to high temperature sensing using femtosecond laser ablation gratings ...
A temperature fiber sensor based on tapered fiber Bragg grating (tapered FBG) fabricated by femtosec...
The fluorescence intensity ratio technique for optical fiber-based point temperature sensing is revi...
We investigate the thermal characteristics of a polymer-clad fiber laser under natural convection wh...
Combining the benefits of photothermal conversion in a doped optical fiber with the principle of Fib...