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Measurements of the Lorentz angle with a Micromegas detector in high transverse magnetic fields

机译:用Micromegas探测器在高横向磁场中测量洛伦兹角

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We measured the Lorentz angle in an argon +10% isobutane mixture using a Micromegas detector placed inside the CLAS-DVCS solenoid of Hall B at the Jefferson Laboratory. The primary goal of these tests was to validate Magboltz-based simulations developed for the implementation of Micromegas bulk detectors in the Central Tracker of the future CLAS12 spectrometer. We used a UV laser to extract electrons from the drift electrode of the detector. After amplification, the electrons were collected on the readout strips and the signals recorded. The difference of position observed between runs with and without magnetic field provided a direct measurement of the Lorentz angle. Scans in the drift electric field were performed for the first time in very high magnetic fields, up to 4.2 T, and a good agreement was observed with the Magboltz predictions.
机译:我们使用置于杰斐逊实验室B厅CLAS-DVCS螺线管内的Micromegas检测器,在氩气+ 10%异丁烷混合物中测量了洛伦兹角。这些测试的主要目的是验证基于Magboltz的模拟,该模拟是为在未来CLAS12光谱仪的中央跟踪器中实施Micromegas体积检测器而开发的。我们使用紫外激光从检测器的漂移电极提取电子。放大后,将电子收集在读出条上并记录信号。在有磁场和无磁场的运行之间观察到的位置差异直接测量了洛伦兹角。首次在高达4.2 T的极高磁场中对漂移电场进行了扫描,并且观察到与Magboltz预测非常吻合。

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