Pixelated Cd(Zn)Te radiation detectors are a promising technology for X-ray imaging applications but their areas are limited to 5 cm2. Active-edge sensors, without guard bands,are explored and characterised in this work to produce a large panel pixelated Cd(Zn)Te detector built of tiled modules with minimal gaps between them. The characterisation of an active-edge sensor fabricated using present processing technologies showed that 87 % of all edge pixels had excellent spectroscopic characteristics for X-ray imaging. However non-uniformities in the charge collection were observed in 34 % of the pixels. These were attributed to regions with poor charge collection efficiency up to 200 µm from the edge due to a low electric field strength near...
High quantum efficiency is important in X-ray imaging applications. This means using high-Z sensor m...
In recent years CdZnTe has been identified as an attractive alternative semiconductor material for t...
Cadmium Zinc Telluride (CdZnTe or CZT) is a very attractive material for room-temperature semiconduc...
Pixelated Cd(Zn)Te radiation detectors are a promising technology for X-ray imaging applications but...
AbstractThe edge surfaces of single crystal CdTe play an important role in the electronic properties...
Large area detectors capable of operating with high detection efficiency at energies above 30 keV ar...
The edge surfaces of single crystal CdTe play an important role in the electronic properties and per...
Driven by the demand of various applications for a detection area that is larger than the active are...
Segmentation of the anode-side of a M-π-n CdTe diode produces detectors with excellent spatial and e...
The Vertical Gradient Freeze (VGF) method has been used to grow high resistivity Cadmium Zinc Tellur...
CdZnTe has been the focus of intense research as an attractive alternative material as a semiconduct...
CdZnTe has been the focus of intense research as an attractive alternative material as a semiconduct...
Abstract Spectrally selective X-ray imaging provides improved material and tissue discrimination in...
Dividing the detector crystal into discrete pixels enables making an imaging detector, in which the ...
The Rutherford Appleton Laboratory has built a small pixel detector for spectroscopic measurements o...
High quantum efficiency is important in X-ray imaging applications. This means using high-Z sensor m...
In recent years CdZnTe has been identified as an attractive alternative semiconductor material for t...
Cadmium Zinc Telluride (CdZnTe or CZT) is a very attractive material for room-temperature semiconduc...
Pixelated Cd(Zn)Te radiation detectors are a promising technology for X-ray imaging applications but...
AbstractThe edge surfaces of single crystal CdTe play an important role in the electronic properties...
Large area detectors capable of operating with high detection efficiency at energies above 30 keV ar...
The edge surfaces of single crystal CdTe play an important role in the electronic properties and per...
Driven by the demand of various applications for a detection area that is larger than the active are...
Segmentation of the anode-side of a M-π-n CdTe diode produces detectors with excellent spatial and e...
The Vertical Gradient Freeze (VGF) method has been used to grow high resistivity Cadmium Zinc Tellur...
CdZnTe has been the focus of intense research as an attractive alternative material as a semiconduct...
CdZnTe has been the focus of intense research as an attractive alternative material as a semiconduct...
Abstract Spectrally selective X-ray imaging provides improved material and tissue discrimination in...
Dividing the detector crystal into discrete pixels enables making an imaging detector, in which the ...
The Rutherford Appleton Laboratory has built a small pixel detector for spectroscopic measurements o...
High quantum efficiency is important in X-ray imaging applications. This means using high-Z sensor m...
In recent years CdZnTe has been identified as an attractive alternative semiconductor material for t...
Cadmium Zinc Telluride (CdZnTe or CZT) is a very attractive material for room-temperature semiconduc...