Characterization, 1064 nm photon signals and background events of a tungsten TES detector for the ALPS experiment
arXiv:1502.07878 · doi:10.1080/09500340.2015.1021723
Abstract
The high efficiency, low-background, and single-photon detection with transition-edge sensors (TES) is making this type of detector attractive in widely different types of application. In this paper, we present first characterizations of a TES to be used in the Any Light Particle Search (ALPS) experiment searching for new fundamental ultra-light particles. Firstly, we describe the setup and the main components of the ALPS TES detector (TES, millikelvin-cryostat and SQUID read-out) and their performances. Secondly, we explain a dedicated analysis method for single-photon spectroscopy and rejection of non-photon background. Finally, we report on results from extensive background measurements. Considering an event-selection, optimized for a wavelength of , we achieved a background suppression of with a efficiency for photons passing the selection. The resulting overall efficiency was with a dark count rate of . We observed that pile-up events of thermal photons are the main background component.
17 pages, 9 figures. Accepted by Journal of Modern Optics
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