In this paper we report about the demonstration of the nuclear track imaging capabilities of Ag-activated phosphate glass. A 375 nm laser and confocal laser scanning microscopy (CLSM) were respectively used for track excitation and detection. Specifically, the blue and orange radiophotoluminescent (RPL) tracks and dose distributions observed after irradiation with soft X-rays, gamma rays and heavy charged particles (HCPs) are examined. In addition, the origins of the reductions in RPL efficiency for high-dose X-ray irradiation and for irradiation with HCPs with high linear energy transfer (LET) values are investigated via a CLSM and a conventional fluorescent reader and discussed
We report a novel two- and three-dimensional (2-D, 3-D) imaging detector based on the radiophotolumi...
A new optical, non-destructive method of detecting and imaging individual heavy charged particle tra...
The objective of this study is to investigate the emission meshanism of radiophotoluminescence (RPL)...
In this paper we report about the demonstration of the nuclear track imaging capabilities of Ag-acti...
Ag-activated phosphate glass, which is the most commonly known radiophotoluminescent (RPL) material,...
The Ag+-doped phosphate glass is well-known as a personal dosimeter based on theradio-photo-luminesc...
Characteristics of fluorescent nuclear track detection with the silver ion-activated phosphate glass...
Optical properties such as optical absorption spectrum and radiophotoluminescence (RPL) emission and...
The Ag+-doped phosphate glass which is commonly employed as the radiophotoluminscence (RPL) dosimete...
Silver (Ag+) doped phosphate glass after exposure to ionizing radiation has an intense luminescence ...
The objective of this study is to investigate the emission mechanism of radiophotoluminescence (RPL)...
We have developed various type radiation detectors and measured radiation dose with them in various ...
We report a demonstration of microscale patterns in Ag-activated phosphate glass fabricated using a ...
Introduction: The Ag-doped phosphate glasses are commonly employed as the personal dosimeter based o...
AbstractOptical properties such as optical absorption and radiophotoluminescence (RPL) spectra of si...
We report a novel two- and three-dimensional (2-D, 3-D) imaging detector based on the radiophotolumi...
A new optical, non-destructive method of detecting and imaging individual heavy charged particle tra...
The objective of this study is to investigate the emission meshanism of radiophotoluminescence (RPL)...
In this paper we report about the demonstration of the nuclear track imaging capabilities of Ag-acti...
Ag-activated phosphate glass, which is the most commonly known radiophotoluminescent (RPL) material,...
The Ag+-doped phosphate glass is well-known as a personal dosimeter based on theradio-photo-luminesc...
Characteristics of fluorescent nuclear track detection with the silver ion-activated phosphate glass...
Optical properties such as optical absorption spectrum and radiophotoluminescence (RPL) emission and...
The Ag+-doped phosphate glass which is commonly employed as the radiophotoluminscence (RPL) dosimete...
Silver (Ag+) doped phosphate glass after exposure to ionizing radiation has an intense luminescence ...
The objective of this study is to investigate the emission mechanism of radiophotoluminescence (RPL)...
We have developed various type radiation detectors and measured radiation dose with them in various ...
We report a demonstration of microscale patterns in Ag-activated phosphate glass fabricated using a ...
Introduction: The Ag-doped phosphate glasses are commonly employed as the personal dosimeter based o...
AbstractOptical properties such as optical absorption and radiophotoluminescence (RPL) spectra of si...
We report a novel two- and three-dimensional (2-D, 3-D) imaging detector based on the radiophotolumi...
A new optical, non-destructive method of detecting and imaging individual heavy charged particle tra...
The objective of this study is to investigate the emission meshanism of radiophotoluminescence (RPL)...