论文标题
LHCB VELO升级的原型传感器的电荷收集属性
Charge collection properties of prototype sensors for the LHCb VELO upgrade
论文作者
论文摘要
提出了广泛的传感器测试活动,致力于测量升级的LHCB实验的顶点定位器(VELO)检测器的原型候选电荷收集属性。收费的收集以传感器暴露于$ 8 \ times 10^{15} 〜1〜 \ Mathrm {\,Me \ Kern -0.1em V}〜\ Mathrm {\,N_ {eq}}〜{讨论了结果,包括不同水平的照射和偏置电压对电荷收集属性的影响。在某些被24 GEV质子辐照的传感器上观察到电荷乘积,达到最高的通量水平。还提供了对防护环区域附近的电荷收集的分析,揭示了传感器原型之间的显着差异。暴露于最大通量后,所有经过测试的传感器变体都成功地收集了6000个电子所需的最低费用。
An extensive sensor testing campaign is presented, dedicated to measuring the charge collection properties of prototype candidates for the Vertex Locator (VELO) detector for the upgraded LHCb experiment. The charge collection is measured with sensors exposed to fluences of up to $8 \times 10^{15}~1~\mathrm{\,Me\kern -0.1em V}~ \mathrm{ \,n_{eq}}~{\mathrm{ \,cm}}^{-2}$, as well as with nonirradiated prototypes. The results are discussed, including the influence of different levels of irradiation and bias voltage on the charge collection properties. Charge multiplication is observed on some sensors that were nonuniformly irradiated with 24 GeV protons, to the highest fluence levels. An analysis of the charge collection near the guard ring region is also presented, revealing significant differences between the sensor prototypes. All tested sensor variants succeed in collecting the minimum required charge of 6000 electrons after the exposure to the maximum fluence.