Experience from the construction and operation of the STAR PXL detector

التفاصيل البيبلوغرافية
العنوان: Experience from the construction and operation of the STAR PXL detector
المؤلفون: Giacomo Contin, M. Szelezniak, Sam Woodmansee, Chinh Vu, Leo Clifford Greiner, H. H. Wieman, E. Anderssen, Joseph H. Silber, J. Schambach, T. Stezelberger, Xiangming Sun
المساهمون: L. Greiner, Greiner, L., Anderssen, E. C., Contin, G., Schambach, J., Silber, J., Stezelberger, T., Sun, X., Szelezniak, M., Vu, C., Wieman, H. H., Woodmansee, S.
بيانات النشر: IOP Science, 2015.
سنة النشر: 2015
مصطلحات موضوعية: Physics, RHIC, Interaction point, Pixel, MAPS, pixe, monolithic, STAR, resolution, Physics::Instrumentation and Detectors, business.industry, Detector, STRIPS, Radiation length, law.invention, Optics, CMOS, Beamline, law, High Energy Physics::Experiment, Relativistic Heavy Ion Collider, business, Instrumentation, Mathematical Physics
الوصف: A new silicon based vertex detector called the Heavy Flavor Tracker (HFT) was installed at the Soleniodal Tracker At RHIC (STAR) experiment for the Relativistic Heavy Ion Collider (RHIC) 2014 heavy ion run to improve the vertex resolution and extend the measurement capabilities of STAR in the heavy flavor domain. The HFT consists of four concentric cylinders around the STAR interaction point composed of three different silicon detector technologies based on strips, pads and for the first time in an accelerator experiment CMOS monolithic active pixels (MAPS) . The two innermost layers at a radius of 2.8 cm and 8 cm from the beam line are constructed with 400 high resolution MAPS sensors arranged in 10-sensor ladders mounted on 10 thin carbon fiber sectors giving a total silicon area of 0.16 m(2). Each sensor consists of a pixel array of nearly 1 million pixels with a pitch of 20.7 μm with column-level discriminators, zero-suppression circuitry and output buffer memory integrated into one silicon die with a sensitive area of ~ 3.8 cm(2). The pixel (PXL) detector has a low power dissipation of 170 mW/cm(2), which allows air cooling. This results in a global material budget of 0.5% radiation length per layer for detector used in this run. A novel mechanical approach to detector insertion allows for the installation and integration of the pixel sub detector within a 12 hour period during an on-going STAR run. The detector specifications, experience from the construction and operation, lessons learned and initial measurements of the PXL performance in the 200 GeV Au-Au run will be presented.
وصف الملف: STAMPA
اللغة: English
الوصول الحر: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::c64ff06a0f959280e9e427fbdb6c3107Test
http://hdl.handle.net/11368/2942022Test
حقوق: CLOSED
رقم الانضمام: edsair.doi.dedup.....c64ff06a0f959280e9e427fbdb6c3107
قاعدة البيانات: OpenAIRE