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Alhussein Abuhoza , S. Biswas, U. Frankenfeld, J. Hehner, Ch. Schmidt GSI, Darmstadt, Germany

Study of the influence of construction materials on the ageing properties of high rate gas detectors. Alhussein Abuhoza , S. Biswas, U. Frankenfeld, J. Hehner, Ch. Schmidt GSI, Darmstadt, Germany and H.R. Schmidt University of Tübingen, Germany. Plan.

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Alhussein Abuhoza , S. Biswas, U. Frankenfeld, J. Hehner, Ch. Schmidt GSI, Darmstadt, Germany

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  1. Study of the influence of construction materials on the ageing properties of high rate gas detectors Alhussein Abuhoza, S. Biswas, U. Frankenfeld, J. Hehner, Ch. Schmidt GSI, Darmstadt, Germany and H.R. Schmidt University of Tübingen, Germany

  2. Plan • Introduction • What is the detector ageing? • Why ageing studies? • Experimental setup • Results • Summary and Outlook

  3. What is the detector ageing? • It is the deterioration of the detector performance.

  4. Sources of ageing Ref: M.Capeans et. al.

  5. Why ageing studies?

  6. Experiment like Compressed Baryonic Matter (CBM) at future FAIR facility at Darmstadt, Germany needs detectors with long term (~10 years) stable operation at high rates.

  7. ~1.25 C/cm2 Estimated accumulated charge at Muon Chamber (MUCH) in CBM Ex. in 10 years. ~0 .1C/cm Estimated accumulated charge at TRD1 in CBM Ex. in 10 years.

  8. Experimental setup

  9. 20 μm W-Au wires Al cathode Fabrication and Operation of MWPC for Ageing test

  10. The setup

  11. t • Fully automatic • Correction for Environmental parameters (e.g. T, P, RH, gas composition) are done taking the ratio of gain for ageing chamber and reference chamber • Required precision should be < 1% Q Ageing Chamber Q Ga/Gr Ma Ma High rate X-ray Fully Automatic ∑Q 55Fe monitor Reference Chamber t Mr Mr

  12. Electronics setup Pre. Detector FAN IN/OUT Dis. ADC scaler O2 P.C. T LabView, recording of: • currents, rate • T, p, O2 • spectra p 12

  13. Results

  14. Stability test of the setup • Spectrum of Fe55 x-ray source are observed for both the ageing and reference chambers with Ar/Co2 : 80/20 • The gain of both the chambers are measured • Temperature and pressure are monitored

  15. Residual instability has been observed due to change in the gas density and detector geometry resulting from the change of ambient parameters (T, P etc.)

  16. Outer windows Inner windows Modification in the design To avoid the residual fluctuation of the gain resulting from the change of geometry of the chamber, extra outer windows have been added with two holes in inner windows 16

  17. Without outer windows With outer windows Very stable operation after correction Unstable after correction Stable proportionality of the gain with T/p ratio Unstable proportionality of the gain with T/p ratio T/P (K/bar) T/P (K/bar)

  18. G/G(ref) ~ 0.2% With the modified design the maximum variation of the gain ratio can be measured <1%

  19. First Repeated First Repeated Non-irradiated wires Irradiated wires Ageing test of silicone-based glue (RTV-3145) with Ar/CO2 : 80/20 The ratio of the gain decreased drastically down to about 30% Electron microscope images of the irradiated and non-irradiatedanode wires

  20. Summary and Outlook • Studies of the influence of construction materials on the ageing properties of the high rate gas detectors are necessary • A dedicated ageing test stand is operational in GSI DetLab • High stability of the electric field in the detector must be achieved for the ageing test • The ambient parameters (e.g. temperature, pressure etc.) should be kept constant during the test as much as possible and the residual should be corrected with the reference chamber • Ageing test is performed on RTV-3145 • Strong decrease of gain observed in RTV-3145 test • For accelerated ageing test the optimization of gas flow rate, intensity of radiation, gas mixing ratio are in progress

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