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Design and Assessment of a 2.5-Gb/s Optical Wireless Transmission System for High Energy Physics

机译:用于高能物理的2.5 Gb / s光学无线传输系统的设计和评估

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摘要

We designed, realized, and tested a 2.5-Gb/s optical wireless communication (OWC) system prototype, that should be employed in high energy physics (HEP) experiments, such as the compact muon solenoid (CMS). The system consists of off-the-shelf components, mainly a vertical cavity surface emitting laser (VCSEl) and a PIn photodiode with a proper ball lens. Since it should be used to transmit data among particle sensors in neighboring rings of the CMS, its target distance is 10 cm. Its most attractive feature is that it does not require a (complex) active tracking system because its measured tolerance to misalignment is around pm 1 mm (at 10-12 bit error rate). We also report the X-rays irradiation tests of all components (Quartz lens, VCSEl, and PIn photodiode): none of them showed any degradation up till 238-Mrad (Si) dose. These results indicate that the designed OWC can be a viable solution for future HEP experiments.
机译:我们设计,实现并测试了2.5 Gb / s光学无线通信(OWC)系统原型,该原型应在紧凑型μ介子螺线管(CMS)等高能物理(HEP)实验中使用。该系统由现成的组件组成,主要是垂直腔表面发射激光器(VCSEl)和带有合适球镜的PIn光电二极管。由于应将其用于在CMS相邻环中的粒子传感器之间传输数据,因此其目标距离为10厘米。它最吸引人的特点是它不需要(复杂的)主动跟踪系统,因为它对失准的测量公差约为pm 1 mm(在10-12的误码率下)。我们还报告了所有组件(石英透镜,VCSE1和PIn光电二极管)的X射线辐射测试:直到238 Mrad(Si)剂量,它们都没有显示出任何降解。这些结果表明,所设计的OWC可以作为未来HEP实验的可行解决方案。

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