Fred Hartjes 1 RD51 mini week, CERN, June 14, 2012 Implementing GridPix in a Darwin detector Matteo Alfonsi, Niels van Bakel, Patrick Decowski, Harry van.

Slides:



Advertisements
Similar presentations
Kathleen Chinetti Sohaila Mali Calibrating Equipment for the Direct Detection of Dark Matter using Noble Element. Scintillation.
Advertisements

First operation of GridPix in double phase Liquid Argon Patrick Decowski Gijs Hemink Mattheo Alfonsi Rolf Schon Niels van Bakel Maarten van Dijk Harry.
Gas Detector Developments Jin Li. Liquid Xenon case Liquid Xenon can be considered as a gaseous xenon of 520 atm. K.Masuda, S. Takasu, T.Doke et al. (Doke.
Reflectivity Measurements of Critical Materials for the LUX Dark Matter Experiment Theory My experiment was a cyclic process involving software, engineering,
Dark Matter Searches with Dual-Phase Noble Liquid Detectors Imperial HEP 1st Year Talks ‒ Evidence and Motivation ‒ Dual-phase Noble Liquid Detectors ‒
Possible merits of high pressure Xe gas for dark matter detection C J Martoff (Temple) & P F Smith (RAL, Temple) most dark matter experiments use cryogenic.
New Readout Methods for LAr detectors P. Otyugova ETH Zurich, Telichenphysik CHIPP Workshop on Neutrino physics.
Proportional Light in a Dual Phase Xenon Chamber
Mechanical and fluidic integration of scintillating microfluidic channels into detector system 1 Davy Brouzet 10 th September 2014.
Fred Hartjes 1 Review of the Gossip R&D proposal for ATLAS at the sLHC CERN, February 8, 2010 Introduction and overview on the Gossip R&D Discussion on.
Kolympari, Crete, June 16, Study of avalanche fluctuations and energy resolution with an InGrid-TimePix detector P. Colas Progress report, based.
Measurement of gas gain fluctuations M. Chefdeville, LAPP, Annecy TPC Jamboree, Orsay, 12/05/2009.
ZEPLIN II Status & ZEPLIN IV Muzaffer Atac David Cline Youngho Seo Franco Sergiampietri Hanguo Wang ULCA ZonEd Proportional scintillation in LIquid Noble.
1 The GEM Readout Alternative for XENON Uwe Oberlack Rice University PMT Readout conversion to UV light and proportional multiplication conversion to charge.
QUPID Readout and Application in Future Noble Liquid Detectors Kevin Lung, UCLA TIPP 2011 June 11, 2011.
Fred Hartjes 1 6 th RD51 collaboration workshop, Bari (Italy), October 9, 2010 Gossip testbeam August 12 – 22, 2010 Maarten van Dijk Martin Fransen Harry.
Radiation Tests on IHP’s SiGe Technologies for the Front-End Detector Readout in the S-LHC M. Ullán, S. Díez, F. Campabadal, G. Pellegrini, M. Lozano CNM.
‘SAUVEUR‘1 st June 2006Fabian Käser BUA Lifetime prediction of solid materials using chemiluminescence to characterise oxidative reactions and model-free.
Timepix-3 test All-ceramic InGrid The focusing TPC
Sheffield : R. Hollingworth, D. Tovey R.A.L. : R.Luscher Development of Micromegas charge readout for two phase Xenon based Dark Matter detectors Contents:
J.T. White Texas A&M University SIGN (Scintillation and Ionization in Gaseous Neon) A High-Pressure, Room- Temperature, Gaseous-Neon-Based Underground.
F August S. Pordes - Fermilab1 Liquid Argon for Direct Detection of Dark Matter Work and Plans at Fermilab.
Discussion: développement du système de lecture des photomultiplicateurs pour le prototype de détecteur Argon liquide de LBNO 21/11/2013 Réunion: APC,
The detection of single electrons using the MediPix2/Micromegas assembly as direct pixel segmented anode NIKHEF: A. Fornaini, H. van der Graaf, P. Kluit,
1 Liquid Argon Dark Matter: Synergies with R&D for Neutrino Detectors: Chemically clean Argon for drifting electrons and light output (Oxygen and H20 relevant.
Digital primary electron counting: W, Fano Factor, Polya vs Exponential M. Chefdeville, NIKHEF, Amsterdam RD51, Paris, October 2008.
1 Update on Silicon Pixel Readout for a TPC at NIKHEF LCWS08 - Chicago 19 Nov 2008 Jan Timmermans NIKHEF.
Snowmass, August, 2005P. Colas - InGrid1 M. Chefdeville a, P. Colas b, Y. Giomataris b, H. van der Graaf a, E.H.M.Heijne c, S.van der Putten a, C. Salm.
1 Two-phase Ar avalanche detectors based on GEMs A. Bondar, A. Buzulutskov, A. Grebenuk, D. Pavlyuchenko, Y. Tikhonov Budker Institute of Nuclear Physics,
DARK MATTER SEARCH Carter Hall, University of Maryland.
IEEE/NSS Oct 22, Electron Counting and Energy Resolution Study from X-ray conversion in Argon Mixtures with an InGrid-TimePix detector. D. ATTIÉ.
1 A two-phase Ar avalanche detector with CsI photocathode: first results A. Bondar, A. Buzulutskov, A. Grebenuk, D. Pavlyuchenko, R. Snopkov, Y. Tikhonov.
PMT test device setup functionality –reproducibility of output signal –dynamic range –limitations –test duration conclusion T. Wälchli, TT-Meeting Brussels,
The digital TPC: the ultimate resolution P. Colas GridPix: integrated Timepix chips with a Micromegas mesh.
Scintillating Bubble Chambers for Direct Dark Matter Detection Jeremy Mock On behalf of the UAlbany and Northwestern Groups 1.
Thorsten Lux. Charged particles X-ray (UV) Photons Cathode Anode Amplification Provides: xy position Energy (z position) e- CsI coating 2 Gas (Mixture)
The Liquid Argon Test Facility in THU Qinghao Chen Tsinghua Univ. CDEX Tuebingen April 9, 2013 Development of High Purity Germanium.
Jim Sullivan.  Big Bang Theory  Dark Matter and Dark Energy  Detecting Dark Matter  Radiation and Pulse Shape Discrimination  SNOLAB  Summary.
Study of the cryogenic THGEM-GPM for the readout of scintillation light from liquid argon Xie Wenqing( 谢文庆 ), Fu Yidong( 付逸冬 ), Li Yulan( 李玉兰 ) Department.
Alex Howard, Imperial College Slide 1 July 2 nd 2001 Underground Project UNDERGROUND PROJECT – Overview and Goals Alex Howard Imperial College, London.
Gossip : Gaseous Pixels Els Koffeman (Nikhef/UvA) (Harry van der Graaf, Jan Timmermans, Jan Visschers, Maximilien Chefdeville, Vladimir Gromov, Ruud Kluit,
Fred Hartjes 1 7 th RD51 collaboration meeting, CERN, April 14, 2011 Overview of Nikhef activities  Study on cross talk events at Gossip (Martin Fransen)
R&D activities on a double phase pure Argon THGEM-TPC A. Badertscher, A. Curioni, L. Knecht, D. Lussi, A. Marchionni, G. Natterer, P. Otiougova, F. Resnati,
Upgrade plans for ATLAS. Nigel Hessey (Nikhef) is overall ATLAS upgrade coordinator.
High Pressure Electroluminescent TPC CIEMAT/IFAE
Elettra Sincrotrone Trieste
Micromegas Vertex Tracker Status Report
First operation of a double phase pure liquid Argon THGEM-TPC
“Performance test of a lead glass
A pixelised detector for thermal neutrons
Saikat Biswas, A. Abuhoza, U. Frankenfeld, C. Garabatos,
Special UCLA High Energy & Astro-Particle (HEAP) Seminar
MPGD 2015 Concise Summary Amos Breskin.
UK Dark Matter Collaboration
Status and Future Developments of TPC’s with MPGD readout systems
A. Badertscher, L. Knecht, D. Lussi, A. Marchionni, G. Natterer, P
Nikhef/Bonn LepCol meeting
MPGD 2013 Conference,Zaragoza July 1-4, 2012
CRYOGENICS OPERATIONS 2008 Organized by CERN
Numerical simulations on single mask conical GEMs
Micro-Pattern Gaseous Detectors
3g Medical Imaging R&D with liquid xenon Compton telescope
New Study for SiPMs Performance in High Electric Field Environment
MWPC’s, GEM’s or Micromegas for AD transfer and experimental lines
Vertex Detector Overview Prototypes R&D Plans Summary.
BINP:Two-phase Cryogenic Avalanche Detector (CRAD) with EL gap and THGEM/GAPD-matrix multiplier: concept and experimental setup Concept: Detector of nuclear.
Gain measurements of Chromium GEM foils
Nikhef/Bonn LepCol meeting
E. Erdal(1), L. Arazi(2), A. Breskin(1), S. Shchemelinin(1), A
Presentation transcript:

Fred Hartjes 1 RD51 mini week, CERN, June 14, 2012 Implementing GridPix in a Darwin detector Matteo Alfonsi, Niels van Bakel, Patrick Decowski, Harry van der Graaf, Gijs Hemink and Rolf Schön Presented by Fred Hartjes

Fred Hartjes 2 RD51 mini week, CERN, June 14, 2012 Contents Principle of Darwin detector Search for dark matter (WIMPs) Applying GridPix in Darwin Experimental results Gas gain in pure Ar at room temperature TimePix operation in cryogenic conditions Scintillation light in the gaseous phase at 87 K Looking for gas gain Thermal behaviour Engineering studies on thermal behaviour Conclusions

Fred Hartjes 3 RD51 mini week, CERN, June 14, 2012 Principle of Darwin detector (baseline) Aim: search for WIMPs => Weakly Interacting Massive Particles Container with dual phase noble gas: liquid/gas Argon or Xenon Drift field E across liquid Double grid across liquid/gas boundary to make a high field here Scintillation light at impact (S1) Scintillation light when electrons traverse liquid/gas boundary (S2) Final outcome is S2/S1 ratio

Fred Hartjes 4 RD51 mini week, CERN, June 14, 2012 Replacing upper PMTs by GridPixs Direct electron counting Measuring recoil path Getting direction of recoil path Several problems to be solved Gas gain in very pure noble gas (NO quencher) Getting it >10?? Thermal stress on grid of GridPix at cooling down to 165K (Xe) or 87K (Ar) Electronic operation of TimePix chip at cryogenic temperature

Fred Hartjes 5 RD51 mini week, CERN, June 14, 2012 Setup of the test detector at Nikhef Field cage with powered GridPix and PMT

Fred Hartjes 6 RD51 mini week, CERN, June 14, 2012 Test in gaseous phase at room temperature Using pure Argon (6.0) Irradiation with 55 Fe gammas TimePix readout triggered by scintillation light at PMT

Fred Hartjes 7 RD51 mini week, CERN, June 14, 2012 Timepix noise level at cryogenic temperatures  Plotted at best threshold level

Fred Hartjes 8 RD51 mini week, CERN, June 14, 2012 Scintillation signal in gas phase at 87K Using 55 Fe gammas From PMT only GridPix powered but not used (showed only discharges) Grid at -150V => no gas gain 1 st peak (S1) appearing immediately 2 nd peak (S2) after 60 µs (scintillation light from double grid)

Fred Hartjes 9 RD51 mini week, CERN, June 14, 2012 PMT signal in gaseous phase at 87K Using different grid voltages Shoulder on peak S2 appears as in indication of gas gain at the GridPix Indication of gas gain -150 V -310 V -495 V -600 V

Fred Hartjes 10 RD51 mini week, CERN, June 14, 2012 Thermal behaviour Often damage on grid of GridPix when cooling down Rim structure (dyke) around grid for proper mechanical and electrostatic termination Grid damaged by thermal stressGrid survived cool down Dykes surrounding the grid

Fred Hartjes 11 RD51 mini week, CERN, June 14, 2012 Engineering studies to avoid excessive local stress Segmenting the dyke may help Dyke interrupted

Fred Hartjes 12 RD51 mini week, CERN, June 14, 2012 Alternative studies on dyke segmentation Greatly increasing the segmentation Adding long and thin dykes to stabilize the grid Full grid with segmented dyke Grid (detail) with thin dyke structures

Fred Hartjes 13 RD51 mini week, CERN, June 14, 2012 Conclusions on applying GridPix in Darwin Gas gain in pure argon at room temperature But bit doubts about the purity TimePix operates at liquid Xe temperature 165 K) Reduced noise level Scintillation signal at LAr temperature (87K) both from impact and from two grid gap Gaseous phase only No operation yet in dual phase Indication of gas gain (from scintillation light) at 87 K in pure Ar gas But no clear GridPix signal yet, only some discharges Mechanical stress on grid after cooling down still critical Engineering effort for better structuring the grid support So still much to quantify, define and investigate