Investigation of radiation damage in the SLD CCD vertex detector 2003 IEEE nuclear science symposium, medical imaging conference, and workshop of room-temperature semiconductor detectors

Early in the operation of the SLD CCD vertex detector (VXD3) at the SLC, radiation damage to the CCDs was observed. It is well known that low energy light particles (electrons and photons) are a few orders of magnitude less effective than heavy particles (neutrons or heavy charged particles) in the generation of radiation damage effects in silicon. The SLD environment was known to be dominated by electrons and photons, and a large fluence of neutrons was not expected. Therefore, this damage is puzzling. A CCD based detector is a leading option for vertex detection at the future linear collider. A full understanding of background models in linear colliders; and the associated damage is needed. Earlier results on neutron damage to an SLD CCD were reported at the 1999 IEEE NSS, and these new results complement our old results. In addition to tests on controlled exposures of individual CCDs, we have studied the nature of the traps produced in the SLD vertex detector to assess their origin heavy or light particles?.

[1]  J. Brau,et al.  Operation of a CCD particle detector in the presence of bulk neutron damage , 1999, 1999 IEEE Nuclear Science Symposium. Conference Record. 1999 Nuclear Science Symposium and Medical Imaging Conference (Cat. No.99CH37019).

[2]  S. Manly,et al.  Design and performance of the SLD vertex detector: a 307 Mpixel tracking system , 1997 .