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Extending Physics Capabilities of the PHENIX Detector with Calorimetry at Forward Rapidities

机译:用量热法以正向速度扩展PHOENIX检测器的物理功能

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The PHENIX detector at RHIC has been designed to study different signatures of the states of matter created in heavy-ion collisions, and to investigate the spin structure of the nucleon. The PHENIX detector measures muons in two muon spectrometers, located at forward rapidities (1.2 < ∣η∣ < 2.4) and hadrons, electrons and photons in the two central spectrometers at mid-rapidity (∣η∣ < 0.35). To make a next step in the PHENIX research program, it is necessary to extend the rapidity coverage beyond the limits set by the existing central spectrometer. The functionality of the PHENIX muon detectors can be extended with added capabilities to measure photonic and hadronic jets. Tungsten calorimeters with silicon pixel readout and fine transverse and longitudinal segmentation are proposed to attain this goal. The proposed calorimeters will be located in the forward directions on either side of the PHENIX interaction point. In this talk we report on the studies of the functionality of the proposed calorimeters: the detector energy resolution, the jet reconstruction capabilities and the characteristics of pion rejection.
机译:RHIC的PHENIX检测器旨在研究重离子碰撞中产生的物质状态的不同特征,并研究核子的自旋结构。 PHENIX检测器在两个正向速度为(1.2 <∣η∣ <2.4)的μ子光谱仪中测量μ子,并在两个中央光谱仪的中速(∣η∣ <0.35)处测量强子,电子和光子。为了在PHENIX研究计划中迈出下一步,有必要将速度覆盖范围扩展到现有中央光谱仪所设定的范围之外。 PHENIXμon探测器的功能可以通过增加的功能来扩展,以测量光子和强子射流。提出了具有硅像素读数以及精细的横向和纵向分段的钨量热仪,以实现此目标。拟议的量热计将位于PHENIX交互点两侧的正向。在本次演讲中,我们将对所建议的量热仪的功能进行研究:检测器的能量分辨率,射流重建能力和离子排斥特性。

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