DocumentCode :
1033329
Title :
New results on DEPFET pixel detectors for radiation imaging and high energy particle detection
Author :
Wermes, N. ; Andricek, L. ; Fischer, P. ; Heinzinger, K. ; Herrmann, S. ; Karagounis, M. ; Kohrs, R. ; Krüger, H. ; Lutz, G. ; Lechner, P. ; Peric, I. ; Porro, M. ; Richter, R.H. ; Schaller, G. ; Schnecke-Radau, M. ; Schopper, F. ; Soltau, H. ; Strüder, L
Author_Institution :
Phys. Inst., Bonn Univ., Germany
Volume :
51
Issue :
3
fYear :
2004
fDate :
6/1/2004 12:00:00 AM
Firstpage :
1121
Lastpage :
1128
Abstract :
DEPFET pixel detectors are unique devices in terms of energy and spatial resolution because very low noise operation can be obtained (ENC=2.2e- at room temperature) by implementing the amplifying transistor in the pixel cell itself. Full DEPFET pixel matrices have been built and operated for autoradiographical imaging with imaging resolutions of 4.3±0.8 μm at 22 keV. For applications in low energy X-ray astronomy the high energy resolution of DEPFET detectors is attractive. For particle physics, DEPFET pixels are interesting as low mass detectors with high spatial resolution. For a linear collider detector the readout must be very fast. New readout chips have been designed and produced for the development of a DEPFET module for a pixel detector at the proposed TESLA collider, containing 520×4000 pixels, with 50 MHz line rate and 25 kHz frame rate. The circuitry contains current memory cells and current hit scanners for fast pedestal subtraction and sparsified readout. The imaging performance of DEPFET devices as well as present achievements toward a DEPFET vertex detector for a linear collider are presented.
Keywords :
X-ray astronomy; field effect transistors; linear colliders; nuclear electronics; position sensitive particle detectors; radioisotope imaging; readout electronics; silicon radiation detectors; 293 to 298 K; DEPFET module; DEPFET pixel detectors; DEPFET pixel matrices; DEPFET vertex detector; TESLA collider; amplifying transistor; autoradiographical imaging; current hit scanners; current memory cells; energy resolution; fast pedestal subtraction; high energy particle detection; imaging performance; imaging resolutions; linear collider detector; low energy X-ray astronomy; low mass detectors; medical imaging; particle physics; radiation imaging; readout chips; silicon detector; sparsified readout; spatial resolution; Energy resolution; High-resolution imaging; Image resolution; Optical imaging; Pixel; Radiation detectors; Radiation imaging; Spatial resolution; Temperature; X-ray imaging; DEPFET; medical imaging; pixel detector; silicon detector;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2004.829490
Filename :
1312028
Link To Document :
بازگشت