COTS Silicon diodes as radiation detectors in proton and heavy charged particle radiotherapy 1.

Radiat Environ Biophys

Medical Physics in Radiation Oncology, DKFZ, Im Neuenheimer Feld 280, 69221 Heidelberg, Germany.

Published: August 2010

Modern radiotherapy facilities for cancer treatment such as the Heavy Ion Therapy Center (HIT) in Heidelberg, Germany, allow for sub-millimeter precision in dose deposition. For measurement of such dose distributions and characterization of the particle beams, detectors with high spatial resolution are necessary. Here, a detector based on the commercially available COTS photodiode (BPW-34) is presented. When applied in hadronic beams of protons and carbon ions, the detector reproduces dose distribution well, but its response decreases rapidly by radiation damage. However, for MeV photon beams, the detector exhibits a similar behavior as found in diode detectors usually applied in radiotherapy.

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http://dx.doi.org/10.1007/s00411-010-0299-8DOI Listing

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COTS Silicon diodes as radiation detectors in proton and heavy charged particle radiotherapy 1.

Radiat Environ Biophys

August 2010

Medical Physics in Radiation Oncology, DKFZ, Im Neuenheimer Feld 280, 69221 Heidelberg, Germany.

Modern radiotherapy facilities for cancer treatment such as the Heavy Ion Therapy Center (HIT) in Heidelberg, Germany, allow for sub-millimeter precision in dose deposition. For measurement of such dose distributions and characterization of the particle beams, detectors with high spatial resolution are necessary. Here, a detector based on the commercially available COTS photodiode (BPW-34) is presented.

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