This work calculates beam quality correction factors (k Q) in monoenergetic proton beams using detailed Monte Carlo simulation of ionization chambers. It uses the Monte Carlo code penh and the electronic stopping powers resulting from the adoption of two different sets of mean excitation energy values for water and graphite: (i) the currently ICRU 37 and ICRU 49 recommended and and (ii) the recently proposed and . Twelve different ionization chambers were studied. The k Q factors calculated using the two different sets of I-values were found to agree with each other within 1.6% or better. k Q factors calculated using current ICRU I-values were found to agree within 2.3% or better with the k Q factors tabulated in IAEA TRS-398, and within 1%...
For the update of the IAEA TRS-398 Code of Practice (CoP), global ionization chamber factors (fQ) an...
The quality correction factor kQ,Q0 for electron beams was calculated for three thimble ionization ...
Purpose: To provide a comprehensive investigation of electron beam reference dosimetry using Monte C...
This work calculates beam quality correction factors (k Q) in monoenergetic proton beams using detai...
This work calculates beam quality correction factors (kQ) in both modulated and unmodulated proton b...
Purpose Beam quality correction factors provided in current codes of practice for proton beams are a...
Objective. To review the currently available data on beam quality correction factors, kQ, for ioniza...
Purpose: To use EGSnrc Monte Carlo simulations to directly calculate beam quality conversion factors...
PURPOSE: The IAEA TRS-398 code of practice details the reference conditions for reference dosimetry ...
In this work we calculate the beam quality correction factor kQ,Q0 for various plane-parallel ioniza...
n this work we calculate the beam quality correction factor ${{k}_{\text{Q},{{\text{Q}}_{0}}}}$ for...
Purpose: To investigate the behavior of plane-parallel ion chambers in high-energy photon beams thro...
Objective. Experimental determination of beam quality k Q factors for two types of Farmer ionization...
Background:In IAEA TRS-398, the uncertainty of the absorbed dose to water Dw for carbon-ion beams is...
Purpose: The journal Medical Physics recently published two papers that determine beam quality conve...
For the update of the IAEA TRS-398 Code of Practice (CoP), global ionization chamber factors (fQ) an...
The quality correction factor kQ,Q0 for electron beams was calculated for three thimble ionization ...
Purpose: To provide a comprehensive investigation of electron beam reference dosimetry using Monte C...
This work calculates beam quality correction factors (k Q) in monoenergetic proton beams using detai...
This work calculates beam quality correction factors (kQ) in both modulated and unmodulated proton b...
Purpose Beam quality correction factors provided in current codes of practice for proton beams are a...
Objective. To review the currently available data on beam quality correction factors, kQ, for ioniza...
Purpose: To use EGSnrc Monte Carlo simulations to directly calculate beam quality conversion factors...
PURPOSE: The IAEA TRS-398 code of practice details the reference conditions for reference dosimetry ...
In this work we calculate the beam quality correction factor kQ,Q0 for various plane-parallel ioniza...
n this work we calculate the beam quality correction factor ${{k}_{\text{Q},{{\text{Q}}_{0}}}}$ for...
Purpose: To investigate the behavior of plane-parallel ion chambers in high-energy photon beams thro...
Objective. Experimental determination of beam quality k Q factors for two types of Farmer ionization...
Background:In IAEA TRS-398, the uncertainty of the absorbed dose to water Dw for carbon-ion beams is...
Purpose: The journal Medical Physics recently published two papers that determine beam quality conve...
For the update of the IAEA TRS-398 Code of Practice (CoP), global ionization chamber factors (fQ) an...
The quality correction factor kQ,Q0 for electron beams was calculated for three thimble ionization ...
Purpose: To provide a comprehensive investigation of electron beam reference dosimetry using Monte C...