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Development of radiation-hard optical links for the CMS tracker at CERN

机译:为CERN的CMS跟踪器开发抗辐射的光学链路

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A radiation-hard optical link is under development for readout and control of the tracking detector in the future CMS experiment at the CERN Large hadron Collider. We present the optical system architecture based on edge-emitting InGaAsP laser-diode transmitters operating at a wavelength of 1.3 /spl mu/m, single mode fiber ribbons, multi-way connectors and InGaAs Pin photodiode receivers. We report on radiation hardness tests of lasers, photodiodes, fibers and connectors. Increases of laser threshold and pin leakage currents with hadron fluence have been observed together with decreases in laser slope-efficiency and photodiode responsivity. Short lengths of single-mode optical fiber and multi-way connectors have been found to be little affected by radiation damage. We analyze the analog and digital performance of prototype optical links transmitting data generated at a 40 MSamples/s rate. Distortion, settling time, bandwidth, noise, dynamic range and bit-error-rate results are discussed.
机译:目前正在开发一种用于辐射的硬光链路,以在未来的CERN大型强子对撞机CMS实验中读出和控制跟踪探测器。我们介绍了基于边缘发射InGaAsP激光二极管发射器的光学系统架构,该发射器工作于1.3 / spl mu / m的波长,单模光纤带,多路连接器和InGaAs Pin光电二极管接收器。我们报告了激光器,光电二极管,光纤和连接器的辐射硬度测试。观察到随着强子通量的增加,激光阈值和引脚漏电流的增加,以及激光斜率效率和光电二极管响应度的降低。已经发现短长度的单模光纤和多路连接器几乎不受辐射损坏的影响。我们分析了原型光学链路的模拟和数字性能,这些链路传输以40 MSamples / s的速率生成的数据。讨论了失真,建立时间,带宽,噪声,动态范围和误码率结果。

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