The ITk strips tracker for the phase-ii upgrade of the ATLAS detector of the HL-LHC
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1 The ITk strips tracker for the phase-ii upgrade of the ATLAS detector of the HL-LHC Afroditi Koutoulaki on behalf of the ATLAS Collaboration 14th Topical Seminar on Innovative Particle and Radiation Detectors (IPRD16) 3-6 October 2016 Siena, Italy
2 Motivation HL-LHC upgrade 10 increase of luminosity wrt LHC ( cm 2 s 1 ) Integrated luminosity of up to 3000 fb 1 Increase in particle rates Data driven readout Increase in radiation dose Radiation hard devices Figure 1: The roadmap to HL-LHC [1] The ITk strips tracker for the phase-ii upgrade of the ATLAS detector of the HL-LHC 1
3 Motivation Upgrade of the ATLAS Inner Tracker (ITk) all silicon based sensors pixels at inner radii; Silicon Pixel Tracker (talk by T. Flick) micro-strips around; Silicon Strip Tracker arranged in Barrels and Endcaps (EC) final layout still in preparation Figure 2: Latest design option 1 with extended pixel barrel layers [1] Figure 3: Latest design option 2 with inclined pixel barrel layers [1] The ITk strips tracker for the phase-ii upgrade of the ATLAS detector of the HL-LHC 2
4 Motivation Silicon Strip Tracker stays the same for both layout options Silicon Strip Tracker up to n eq/cm 2 maximum dose Barrel : 4 layers (2 long-strip, 2 short-strip) Endcap: 6 disks at each side 165 m 2 silicon area 50 million channels A factor of 10 more channels to operate! The ITk strips tracker for the phase-ii upgrade of the ATLAS detector of the HL-LHC 3
5 Sensor Silicon Strip Sensors Operation up to 500 V or 700 V (under discussion) 320 um thick silicon strip sensor n-in-p float zone technology (FZ) Pitch per strip 74.5 um for Barrel and varying for Endcaps Single sided sensors 40 mrad stereo angle between strips on opposite side sensors Figure 4: n+ strips in p-type substrate (n-in-p) The ITk strips tracker for the phase-ii upgrade of the ATLAS detector of the HL-LHC 4
6 ASICs and Powering Scheme ATLAS Binary Chip 130 nm (ABC130) 256 binary readout channels per ASIC Wirebonded to sensor strips Mounted on low-mass flex hybrids 1 hybrid per 2 rows of strips Hybrid Controller Chip (HCC) Data send from ABC130 to HCC up to 32 Mbps HCC sends data to EoS up to 640 Mbps End of Structure (EoS) Interface to modules and off detector Sends all multiplexed data off the detector via optical links Hosts most of the Detector Control System (DCS) components TTC/DATA/DCS All in a single copper/kapton bus tape Figure 5: The first EC hybrid with ABC130 chips and HCC [6] Figure 6: Overview of main electrical components [5] The ITk strips tracker for the phase-ii upgrade of the ATLAS detector of the HL-LHC 5
7 ASICs and Powering Scheme Baseline Powering Scheme DC/DC powering scheme with 2 step power conversion for LV improve power efficiency and reduce cables size Radiation hard DC/DC converter to supply 1.5 V High Voltage Multiplexing Scheme with HV switches Autonomous Monitor & Control ASIC (AMAC) monitors temperature, voltage, etc. and controls HV switch and power to hybrid(s). Figure 7: DC/DC power conversion scheme from 10 V in the power rail to 1.5 V in the hybrids [6] The ITk strips tracker for the phase-ii upgrade of the ATLAS detector of the HL-LHC 6
8 Structural support The basic modular mechanical units Barrel Stave (a) Endcap Petal (b) Figure 8: Cross section of a Stave [2] Double-sided structure Hosting electrical services and modules Light weight carbon-fiber mechanical support Embedded cooling with 2-phase CO2 The ITk strips tracker for the phase-ii upgrade of the ATLAS detector of the HL-LHC 7
9 Introduction ATLAS ITk Strip Tracker Upgrade Current Status Epilogue References Current status of prototyping and testing Sensors and modules I Many devices tested I I I Un-irradiated and irradiated Barrel full-size modules (short and long strips separately) Mini-sensors with EC hybrid (un-irradiated, irradiated ASIC, irradiated ASIC and sensor) Include electrical tests and testbeams (EUDET telescope with FE-I4 chips) Figure 9: ABC130 with EC mini-sensors tested- neutron irradiated sensors neq /cm2, X-ray irradiated ABC Mrad/hr at -5 C [7] The ITk strips tracker for the phase-ii upgrade of the ATLAS detector of the HL-LHC 8
10 Current status of prototyping and testing Sensors and modules Looking for replacement of silver epoxy glue between ASIC and hybrid Short curing time (6 h for silver epoxy glue) Avoid glues with high activation effects after irradiation Undesired corrosive effects on other conponents Similar performance during construction and operation of modules Tests on UV cure glues including irradiation, thermal cycling and shear tests Figure 10: Comparison of the temperature profiles measured on a hybrid for different glues, for un-irradiated and irradiated hybrid areas. [3] The ITk strips tracker for the phase-ii upgrade of the ATLAS detector of the HL-LHC 9
11 Current status of prototyping and testing ASICs and Powering Observing TID bump in ABC factor (still on going) First X-ray irradiation of HCC at RAL was successful HV multiplexing scheme progressing (See talk by G. Villani - Tuesday session A) Development of AMAC well under way Figure 11: Power board with a DC/DC converter, HV switch for sensor bias, AMAC, coil and shielding box The ITk strips tracker for the phase-ii upgrade of the ATLAS detector of the HL-LHC 10
12 Introduction ATLAS ITk Strip Tracker Upgrade Current Status Epilogue References Current status of prototyping and testing Module-on-core assembly I Module-on core assembly machine for the Barrel in place and functional I Module assembly frames and tools for EC in desing and manufacturing state I Module pick-up station with bridge system designed, manufactured and assembled Figure 13: Mounting up to 13 short strip Barrel modules at RAL [1] Figure 12: Pick-up station with bridge system, Freiburg 2016 The ITk strips tracker for the phase-ii upgrade of the ATLAS detector of the HL-LHC 11
13 Current status of prototyping and testing Thermo-mechanical structures with modules Building a full-size thermo-mechanical Petal Includes si, FR4 PCBs, glass ASICs with heater patterns and bonding pads, DC-DC converters, bus tape Built 11 thermo-mechanical Barrel modules Tested mechanically and thermally Thermal imaging and laser scanning Building a full-size thermo-mechanical Stave Figure 14: Thermo-mechanical Petal (DESY) on going Figure 15: Thermo-mechanical Stave on going (UK) The ITk strips tracker for the phase-ii upgrade of the ATLAS detector of the HL-LHC 12
14 Summary ATLAS Strip Tracker upgrade Towards ITk Strips Technical Design Report (TDR) by end of 2016 Sensor, ASIC and module testing in good progress Many Barrel sensors produced and tested while full-size EC sensors will be produced soon Reliable set-up exist in different institutes Experience gained in hybrid and module assembly in many sites A full mechanical and thermal evaluation program and the tools to build them is currently ongoing Valuable experience gained with prototype testing and tooling manufacturing The ITk strips tracker for the phase-ii upgrade of the ATLAS detector of the HL-LHC 13
15 Thank you for your attention! The ITk strips tracker for the phase-ii upgrade of the ATLAS detector of the HL-LHC 14
16 References [1] ATLAS Upgrade phase II Scoping Document,The ATLAS Collaboration, 2015 https : //cds.cern.ch/record/ ?ln = en [2] Silicon strip staves and petals for the ATLAS Upgrade tracker of the HL-LHC, Sergio Diez, NIMA699(2013)9396 [3] Alternative glues for the production of ATLAS silicon strip modules for the Phase-II upgrade of the ATLAS Inner Detector, L. Poley et all, JINST 2016 [4] Embedded pitch adapters: A high-yield interconnection solution for strip sensors, Ullan et. al., NIM A, 831, p , 2016 [5] Letter of Intent for the Phase-II Upgrade of the ATLAS Experiment, ATLAS Collaboration, 2012, CERN-LHCC ; LHCC-I-023 https : //cds.cern.ch/record/ /files/lhcc I 023.pdf [6] The ATLAS ITk Strip Detector. Status of R&D, Carlos Garcia Argos, on behalf of the ATLAS ITk Strip Collaboration, NIM A 2016 [7] First testbeam results of prototype modules for the upgrade of the ATLAS strip tracking detector, Susanne Kuehn, ICHEP, Chicago, USA 4th August, 2016 The ITk strips tracker for the phase-ii upgrade of the ATLAS detector of the HL-LHC 15
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