Development of a LINAC head model for the CyberKnife VSI-System using EGSnrc Monte Carlo system. [PDF]
Abstract Introduction In order to understand the interaction processes of photons and electrons of the CyberKnife VSI‐System, a modeling of the LINAC head must take place. Here, a Monte Carlo simulation can help. By comparing the measured data with the simulation data, the agreement can be checked. Materials and methods For the Monte Carlo simulations,
Thiele M, Galonske K, Ernst I, Mack A.
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Monte Carlo modelling and validation of the elekta synergy medical linear accelerator equipped with radiosurgical cones. [PDF]
Renil Mon PS, Meena-Devi VN, Bhasi S.
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Validation of Monte Carlo-based calculations for megavolt electron beams for IORT and FLASH-IORT. [PDF]
Lazarus GL, van Eeden D, du Plessis FC.
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Synchrotron radiation and X-ray free-electron lasers (X-FELs) explained to all users, active and potential. [PDF]
Hwu Y, Margaritondo G.
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Development of an independent MU calculation software for radiotherapy treatments with stereotactic cones. [PDF]
Campos GFP +4 more
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Relativistic impulse approximation in the atomic ionization process induced by millicharged particles. [PDF]
Qiao CK, Lin ST, Chi HC, Jia HT.
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Proceedings to the 60th Annual Conference of the Particle Therapy Cooperative Group: 27 June - 2 July, 2022, Hosted by Miami Cancer Institute, part of Baptist Health South Florida, Miami, FL, USA. [PDF]
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Novel efficient THz undulator using a laser-driven wire. [PDF]
Nakajima K.
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Generation of femtosecond γ-ray bursts stimulated by laser-driven hosing evolution. [PDF]
Ma Y +9 more
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Multi-GeV electron-positron beam generation from laser-electron scattering. [PDF]
Vranic M, Klimo O, Korn G, Weber S.
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