论文标题

橘子项目:高分辨率65 nm硅地图的开发

The Tangerine project: Development of high-resolution 65 nm silicon MAPS

论文作者

Wennlöf, Håkan, Chauhan, Ankur, Viera, Manuel Del Rio, Eckstein, Doris, Feindt, Finn, Gregor, Ingrid-Maria, Hansen, Karsten, Huth, Lennart, Mendes, Larissa, Mulyanto, Budi, Rastorguev, Daniil, Reckleben, Christian, Daza, Sara Ruiz, Schütze, Paul, Simancas, Adriana, Spannagel, Simon, Stanitzki, Marcel, Velyka, Anastasiia, Vignola, Gianpiero

论文摘要

橘子项目旨在开发新的最先进的高精度硅探测器。该项目的一部分的目的是使用新型的65 nm CMOS成像工艺开发单层活性像素传感器,并具有小型收集电极。这是该过程在粒子物理学中的第一个应用,它引起了极大的兴趣,因为与其他过程相比,它允许增加逻辑密度,减少功耗和材料预算。设想该过程将用于下一个Alice Inner Tracker升级,以及在Electron-Ion Collider进行的实验中。 为期三年的橘子项目的最初目标是在DESY的测试梁望远镜中使用65 nm CMOS成像过程中开发和测试传感器,提供出色的空间分辨率和高时间分辨率,从而证明了该过程的能力。该项目涵盖了传感器研发的各个方面,从使用模拟的电子和传感器设计到实验室和测试梁的原型测试芯片表征。传感器设计仿真是通过使用技术辅助设计和高统计量蒙特卡洛模拟使用AllPix Squared Framework的技术辅助设计和高统计量的蒙特卡洛模拟来执行的。该过程中的第一个原型测试芯片已经设计和生产,并在实验室和测试梁中成功操作和测试。

The Tangerine project aims to develop new state-of-the-art high-precision silicon detectors. Part of the project has the goal of developing a monolithic active pixel sensor using a novel 65 nm CMOS imaging process, with a small collection electrode. This is the first application of this process in particle physics, and it is of great interest as it allows for an increased logic density and reduced power consumption and material budget compared to other processes. The process is envisioned to be used in for example the next ALICE inner tracker upgrade, and in experiments at the electron-ion collider. The initial goal of the three-year Tangerine project is to develop and test a sensor in a 65 nm CMOS imaging process that can be used in test beam telescopes at DESY, providing excellent spatial resolution and high time resolution, and thus demonstrating the capabilities of the process. The project covers all aspects of sensor R&D, from electronics and sensor design using simulations, to prototype test chip characterisation in labs and at test beams. The sensor design simulations are performed by using a powerful combination of detailed electric field simulations using technology computer-aided design and high-statistics Monte Carlo simulations using the Allpix Squared framework. A first prototype test chip in the process has been designed and produced, and successfully operated and tested both in labs and at test beams.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源