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Geant4 Simulation Model of Electromagnetic Processes in Oriented Crystals for Accelerator Physics

Journal of the Korean Physical Society(2023)

INFN Ferrara | Korea Institute of Science and Technology Information (KISTI) | Laboratori Nazionali del Sud | University of Wollongong | Belarusian State University | European Organization for Nuclear Research (CERN)

Cited 3|Views61
Abstract
Electromagnetic processes of charged particles interaction with oriented crystals provide a wide variety of innovative applications such as beam steering, crystal-based extraction/collimation of leptons and hadrons in an accelerator, a fixed-target experiment on magnetic and electric dipole moment measurement, X-ray and gamma radiation source for radiotherapy and nuclear physics and a positron source for lepton and muon colliders, a compact crystalline calorimeter as well as plasma acceleration in the crystal media. One of the main challenges is to develop an up-to-date, universal and fast simulation tool to simulate these applications. We present a new simulation model of electromagnetic processes in oriented crystals implemented into Geant4, which is a toolkit for the simulation of the passage of particles through matter. We validate the model with the experimental data as well as discuss the advantages and perspectives of this model for the applications of the oriented crystals mentioned above.
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Channeling,Geant4,Crystal
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要点】:本文提出了一个新的电磁过程模拟模型,该模型在Geant4中实现,用于预测带电粒子与定向晶体相互作用的过程,并讨论了其在加速器物理领域的应用优势及前景。

方法】:研究通过将电磁过程模拟模型集成到Geant4工具包中,这是一种用于模拟粒子穿越物质行为的软件。

实验】:模型通过实验数据进行了验证,但具体实验细节及使用的数据集名称未在摘要中明确提及。