English

Enhanced UV light detection using a p-terphenyl wavelength shifter

Instrumentation and Detectors 2018-03-14 v4

Abstract

UV-glass photomultiplier tubes (PMTs) have poor photon detection efficiency for wavelengths below 300nm300\,\text{nm} due to the opaqueness of the window material. Costly quartz PMTs could be used to enhance the efficiency below 300nm300\,\text{nm}. A less expensive solution that dramatically improves this efficiency is the application of a thin film of a p-terphenyl (PT) wavelength shifter on UV-glass PMTs. This improvement was quantified for Photonis XP4500B PMTs for wavelengths between 200nm200\,\text{nm} and 400nm400\,\text{nm}. The gain factor ranges up to 5.4 ±\pm 0.5 at a wavelength of 215nm215\,\text{nm}, with a material load of 110±10μg/cm2110\pm10\,\mu\text{g}/\text{cm}^2 (894nm894\,\text{nm}). The wavelength shifter was found to be fully transparent for wavelengths greater than 300nm300\,\text{nm}. The resulting gain in detection efficiency, when used in a typical Cherenkov counter, was estimated to be of the order of 40\%. Consistent coating quality was assured by a rapid gain testing procedure using narrow-band UV LEDs. Based on these results, 200 Photonis XP4500B PMTs were treated with PT for the upgraded low-threshold Cherenkov counter (LTCC) to be used in the CEBAF Large Acceptance Spectrometer upgraded detector (CLAS12) at the Thomas Jefferson National Accelerator Facility.

Keywords

Cite

@article{arxiv.1611.03467,
  title  = {Enhanced UV light detection using a p-terphenyl wavelength shifter},
  author = {S. Joosten and E. Kaczanowicz and M. Ungaro and M. Rehfuss and K. Johnston and Z. -E. Meziani},
  journal= {arXiv preprint arXiv:1611.03467},
  year   = {2018}
}
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