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Fast pixelated sensors for radiation detection and imaging based on quantum confined structures in III/V semiconductors

Articolo
Data di Pubblicazione:
2017
Abstract:
In order to improve the characterisation of the delivered beams in many types of photon sources, innovative beam profilers based on III/V semiconductor materials (InGaAs/InAlAs) have been deeply investigated. Owing to a tunable and direct band gap these devices allow radiation detection in a wide spectral range. In order to increase the sensitivity of the device in radiation detection charge amplification on the sensor level is implemented. This is obtained by exploiting In0.75Ga0.25As/In0.75Al0.25As quantum wells (QW) hosting a two-dimensional electron gas (2DEG) through molecular beam epitaxy (MBE). Internal charge-amplification mechanism can be achieved for very low applied voltages, while the high carrier mobility allows the design of very fast photon detectors with sub-nanosecond response times. This technology has been preliminarily exploited to fabricate prototype beam profilers with a strip geometry (with 50-?m-wide strips). Tests were carried out both with conventional X-ray tubes and at the Elettra synchrotron facility. The results testify how these profilers are capable of reconstructing the shape of the beam, as well as estimating the position of the beam centroid with a precision of about 400 nm. Further measurements with different samples of decreasing thickness have shown how this precision could be further improved by an optimised microfabrication. For this reason a new design, based on a membrane-photodetector, is proposed. Results regarding the spatial resolution as function of the sensor thickness will be presented and discussed.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
Amplification mechanism High carrier mobility III/V semiconductorsLow applied voltages Quantum-confined structures Radiation detection Two-dimensional electron gas (2DEG) Wide spectral range
Elenco autori:
Biasiol, Giorgio
Autori di Ateneo:
BIASIOL GIORGIO
Link alla scheda completa:
https://iris.cnr.it/handle/20.500.14243/344515
Pubblicato in:
JOURNAL OF INSTRUMENTATION
Journal
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