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Study of edgeless radiation detector with 3D spatial mapping technique

Year of publication

2014

Authors

Wu, Xiaopeng; Kalliopuska, Jukka; Jakůbek, M.; Jakůbek, J.; Gädda, Akiko; Eränen, Simo

Abstract

Edgeless radiation detector has gained increased attention due to its superiority in the defect-free edge fabrication and the capability to minimize the insensitive area at the detector edge. The doped edge in the edgeless detector is at the same potential with the back plane and causes a local distortion of the electric field at the detector edge. The deformed electric field alters the charge collection of the edge pixel and leads to an inaccurate charge interpolation. To study the influence of active edges on the response of edge pixels, we used an advanced X-ray based 3D spatial mapping technique to visually show the charge collection volumes of pixels. Various edgeless detectors with diverse polarities, thicknesses and edge-to-pixel distances were investigated. For the n-on-p (n<sup>+</sup>/p<sup>-</sup>/p<sup>+</sup>) edgeless detector, the mapping shows that the p-spray isolation method has the advantage of achieving a greater sensitive edge region compared to the p-stop method. And the p-on-p (p<sup>+</sup>/p<sup>-</sup>/n<sup>+</sup>) edgeless detector, reported for the first time, functions for both spatial and energy signals. The n-type edgeless detectors were studied together with a standard Medipix detector with the guard ring design. The results show that the edgeless detector is capable of maximally utilizing the edge region of the detector as the charge sensitive volume, while the standard Medipix detector has still vast insensitive region at the edge. The X-ray spectroscopic measurements with <sup>241</sup>Am and <sup>55</sup>Fe sources performed on all detectors gives a similar conclusion and proves the 3D spatial mapping results.
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Organizations and authors

VTT Technical Research Centre of Finland Ltd

Gädda Akiko

Kalliopuska Jukka

Eränen Simo

Wu Xiaopeng

Publication type

Publication format

Article

Parent publication type

Journal

Article type

Original article

Audience

Scientific

Peer-reviewed

Peer-Reviewed

MINEDU's publication type classification code

A1 Journal article (refereed), original research

Publication channel information

Volume

9

Article number

C04004

​Publication forum

60710

​Publication forum level

1

Open access

Open access in the publisher’s service

Yes

Open access of publication channel

Partially open publication channel

License of the publisher’s version

CC BY

Self-archived

No

Other information

Fields of science

Electronic, automation and communications engineering, electronics

Language

English

International co-publication

Yes

Co-publication with a company

Yes

DOI

10.1088/1748-0221/9/04/C04004

The publication is included in the Ministry of Education and Culture’s Publication data collection

Yes