Title :
The basics of experimental determination of the Fano factor in intrinsic semiconductors
Author :
Samedov, Victor V.
Author_Institution :
Nat. Res. Nucl. Univ. (Moscow Eng. Phys. Inst.), Moscow, Russia
Abstract :
Intrinsic semiconductors such as High Purity Germanium Detectors are exceptional X-ray and gamma-ray detectors because of their large sizes and small band gap. They are used for fundamental scientific researches, nuclear material safeguards and security, environmental protection, and human health and safety. The fundamental limit of the energy resolution of a semiconductor detector is determined by variance in the number of electron-hole pairs produced by X-rays in detector volume. The principal characteristic of material for using as semiconductor detector is the Fano factor that determines the fluctuation in the number of electron-hole pairs. Now, all existing methods of experimental determination of the Fano factor in semiconductors are based on the subtraction of electronic noise from the signal variance. In this work, I propose the method of experimental determination of the Fano factor in a planar semiconductor detector based on dependences of the mean amplitude and the energy resolution on the electric field. It was shown that inverse electric field expansion of these dependences allow determining the Fano factor, electron mobility lifetime product, and relative variance of electron lifetime due to inhomogeneous charge transport in semiconductor material. The important advantage of the proposed method is independence on detector electronic noise.
Keywords :
X-ray detection; gamma-ray detection; germanium radiation detectors; Fano factor; X-ray detectors; detector electronic noise; electron mobility lifetime; electron-hole pairs; electronic noise; environmental protection; gamma-ray detectors; high-purity germanium detectors; human health; inhomogeneous charge transport; intrinsic semiconductors; inverse electric field expansion; nuclear material safeguards; planar semiconductor detector; semiconductor detector energy resolution; semiconductor material; Electric fields; Electrodes; Energy resolution; Noise; Semiconductor detectors; Semiconductor materials; Fano factor; energy resolution; semiconductor detector;
Conference_Titel :
Advancements in Nuclear Instrumentation Measurement Methods and their Applications (ANIMMA), 2013 3rd International Conference on
Conference_Location :
Marseille
Print_ISBN :
978-1-4799-1046-5
DOI :
10.1109/ANIMMA.2013.6727981