Neutron measurements with a CdTe spectrometer on a proton therapy unit. (July 2020)
- Record Type:
- Journal Article
- Title:
- Neutron measurements with a CdTe spectrometer on a proton therapy unit. (July 2020)
- Main Title:
- Neutron measurements with a CdTe spectrometer on a proton therapy unit
- Authors:
- Van Delinder, Kurt W.
Crawford, Daniel
Zhang, Tiezhi
Khan, Rao
Gräfe, James L. - Abstract:
- Abstract: The purpose of this work was to investigate the use of a commercial cadmium-telluride detector as an absolute thermal neutron measurement device on a proton therapy unit. Experimental measurements were performed on water phantoms using a 25 mm 2, 1 mm thick uncollimated CdTe spectrometer. The detector was shielded using sheets of borated polyethylene minimizing the measured direct neutron spectrum from the treatment nozzle. For each measurement a significant 95.9 keV prompt gamma-ray peak resulting from 113 Cd thermal neutron capture within the CdTe detector was observed. For comparison, and to identify relevant trends, all setups were simulated within the Monte Carlo code MCNP6. For a dose of 21.0 Gy to a 100 mL water phantom, 0–5 cm spread out Bragg peak (SOBP), 7760 ± 299 counts (corrected for dead-time) were measured at the detector location 10 cm from the water surface and perpendicular to the proton beam, which corresponds to an absolute fluence of 1.5 × 10 6 thermal neutrons/cm 2 . The delivery of 8.3 Gy, 1.5 to 6.5 SOBP within a water tank phantom resulted in 2522 ± 233 counts or 4.9 × 10 5 thermal neutrons/cm 2 with the detector located 5 cm away from the surface of the water tank phantom. Using MCNP6, the simulated thermal neutron fluence was determined to be within the same order of magnitude and within a factor of 3 for all configurations. This research demonstrates the first use of cadmium-telluride (CdTe) as an absolute slow neutron detector for theAbstract: The purpose of this work was to investigate the use of a commercial cadmium-telluride detector as an absolute thermal neutron measurement device on a proton therapy unit. Experimental measurements were performed on water phantoms using a 25 mm 2, 1 mm thick uncollimated CdTe spectrometer. The detector was shielded using sheets of borated polyethylene minimizing the measured direct neutron spectrum from the treatment nozzle. For each measurement a significant 95.9 keV prompt gamma-ray peak resulting from 113 Cd thermal neutron capture within the CdTe detector was observed. For comparison, and to identify relevant trends, all setups were simulated within the Monte Carlo code MCNP6. For a dose of 21.0 Gy to a 100 mL water phantom, 0–5 cm spread out Bragg peak (SOBP), 7760 ± 299 counts (corrected for dead-time) were measured at the detector location 10 cm from the water surface and perpendicular to the proton beam, which corresponds to an absolute fluence of 1.5 × 10 6 thermal neutrons/cm 2 . The delivery of 8.3 Gy, 1.5 to 6.5 SOBP within a water tank phantom resulted in 2522 ± 233 counts or 4.9 × 10 5 thermal neutrons/cm 2 with the detector located 5 cm away from the surface of the water tank phantom. Using MCNP6, the simulated thermal neutron fluence was determined to be within the same order of magnitude and within a factor of 3 for all configurations. This research demonstrates the first use of cadmium-telluride (CdTe) as an absolute slow neutron detector for the application of proton therapy and neutron dosimetry. Highlights: Proton therapy experimental measurements on water phantoms using a 25 mm 2, 1 mm thick uncollimated CdTe spectrometer. Significant 95.9 keV prompt gamma-ray peaks resulting from 113 Cd thermal neutron capture within the CdTe detector were observed. Using MCNP6, the thermal neutron fluence was within the same order of magnitude and a factor of 3 for all configurations. This study consists of the first use of cadmium-telluride (CdTe) as an absolute slow neutron detector for proton therapy. … (more)
- Is Part Of:
- Radiation measurements. Volume 135(2020:Apr.)
- Journal:
- Radiation measurements
- Issue:
- Volume 135(2020:Apr.)
- Issue Display:
- Volume 135 (2020)
- Year:
- 2020
- Volume:
- 135
- Issue Sort Value:
- 2020-0135-0000-0000
- Page Start:
- Page End:
- Publication Date:
- 2020-07
- Subjects:
- Thermal neutron detection -- Proton therapy -- Secondary neutron detection -- Cadmium telluride detector
Nuclear emulsions -- Periodicals
Particle tracks (Nuclear physics) -- Periodicals
Thermoluminescence -- Periodicals
Cosmic rays -- Periodicals
Radiation -- Measurement -- Periodicals
Radiometry -- Periodicals
Radiation Monitoring -- Periodicals
Émulsions nucléaires -- Périodiques
Particules (Physique nucléaire) -- Traces -- Périodiques
Thermoluminescence -- Périodiques
Rayonnement cosmique -- Périodiques
Radiométrie -- Périodiques
539.77 - Journal URLs:
- http://www.sciencedirect.com/science/journal/13504487 ↗
http://www.elsevier.com/journals ↗
http://www.journals.elsevier.com/radiation-measurements/ ↗ - DOI:
- 10.1016/j.radmeas.2020.106377 ↗
- Languages:
- English
- ISSNs:
- 1350-4487
- Deposit Type:
- Legaldeposit
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- Available online (eLD content is only available in our Reading Rooms) ↗
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- British Library DSC - 7227.973000
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