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12 GeV Detector Technology At Jefferson Lab

机译:杰斐逊实验室的12 GEV探测器技术

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The Thomas Jefferson National Accelerator Facility (JLab) is presently in the middle of an upgrade to increase the energy of its CW electron beam from 6 GeV to 12 GeV along with the addition of a fourth experimental hall. Driven both by necessity and availability, novel detectors and electronics modules have been used in the upgrade. One such sensor is the Silicon Photomultiplier (SiPM), specifically a Multi-Pixel Photon Counter (MPPC), which is an array of avalanche photodiode pixels operating in Geiger mode that are used to sense photons. The SiPMs replace conventional photomultiplier tubes and have several distinct advantages including the safe operation in a magnetic field and the lack of need for high voltage. Another key to 12 GeV success is advanced fast electronics. Jlab will use custom 250 MHz and 125 MHz 12-bit analog to digital converters (ADCs) and time to digital converters (TDCs) all of which take advantage of VME Switched Serial (VXS) bus with its GB/s high bandwidth readout capability. These new technologies will be used to readout drift chambers, calorimeters, spectrometers and other particle detectors at Jlab once the 12 GeV upgrade is complete. The largest experiment at Jlab utilizing these components is GlueX - an experiment in the newly constructed Hall D that will study the photoproduction of light mesons in the search for hybrid mesons. The performance of these components and their respective detectors will be presented.
机译:Thomas Jefferson国家加速器设施(JLAB)目前正处于升级的中间,以增加其CW电子束的能量,从6 GEV到12 GEV以及添加第四个实验厅。通过必要性和可用性而驱动,新颖的探测器和电子模块已在升级中使用。一个这样的传感器是硅光电倍增管(SIPM),特别是多像素光子计数器(MPPC),其是在用于感测光子的地革模式下操作的雪崩光电二极管像素阵列。 SIPM替换传统的光电倍增管,并且具有几个不同的优点,包括磁场中的安全操作和缺乏高电压。 12 GEV成功的另一个关键是先进的快速电子产品。 JLAB将使用Custom 250 MHz和125 MHz 12位模数与数字转换器(ADC)和时间转换器(TDC)所有这些转换器(TDC)都利用了VME交换机串行(VXS)总线,其GB / S高带宽读数能力。一旦12 GEV升级完成,这些新技术将用于读出漂移腔室,热量计,光谱仪和JLAB的其他粒子探测器。利用这些组件的Jlab最大的实验是胶水克斯 - 在新建的大厅D中的实验,将研究在寻找混合阶段的光迈克斯的光保护。将呈现这些组件及其各自的检测器的性能。

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