Effect of the wire width on the intrinsic detection efficiency of superconducting-nanowire single-photon detectors

R. Lusche, A. Semenov, K. Ilin, M. Siegel, Yuliya Korneeva, A. Trifonov, A. Korneev, Gregory Goltsman, D. Yu. Vodolazov, Heinz‐Wilhelm Hübers

Journal of Applied Physics · 2014 · 44 citations · 38 references

DOIFull text

Open access

Abstract

A thorough spectral study of the intrinsic single-photon detection efficiency in superconducting TaN and NbN nanowires with different widths has been performed. The experiment shows that the cut-off of the intrinsic detection efficiency at near-infrared wavelengths is most likely controlled by the local suppression of the barrier for vortex nucleation around the absorption site. Beyond the cut-off quasi-particle diffusion in combination with spontaneous, thermally activated vortex crossing explains the detection process. For both materials, the reciprocal cut-off wavelength scales linearly with the wire width where the scaling factor agrees with the hot-spot detection model.

References

38