English

Single-photon detection using large-scale high-temperature MgB$_2$ sensors at 20 K

Superconductivity 2023-08-30 v1

Abstract

Ultra-fast single-photon detectors with high current density and operating temperature can benefit space and ground applications, including quantum optical communication systems, lightweight cryogenics for space crafts, and medical use. Here we demonstrate magnesium diboride (MgB2_2) thin-film superconducting microwires capable of single-photon detection at 1.55 μ\mum optical wavelength. We used helium ions to alter the properties of MgB2_2, resulting in microwire-based detectors exhibiting single-photon sensitivity across a broad temperature range of up to 20 K, and detection efficiency saturation for 1 μ\mum wide microwires at 3.7 K. Linearity of detection rate vs incident power was preserved up to at least ~100 Mcps. Despite the large active area of up to 400×\times400 μ\mum2^2, the reset time was found to be as low as 1\sim1 ns. Our research provides new possibilities for breaking the operating temperature limit and maximum single-pixel count rate, expanding the detector area, and raises inquiries about the fundamental mechanisms of single-photon detection in high-critical-temperature superconductors.

Keywords

Cite

@article{arxiv.2308.15228,
  title  = {Single-photon detection using large-scale high-temperature MgB$_2$ sensors at 20 K},
  author = {I. Charaev and E. K. Batson and S. Cherednichenko and K. Reidy and V. Drakinskiy and Y. Yu and S. Lara-Avila and J. D. Thomsen and M. Colangelo and F. Incalza and K. Ilin and A. Schilling and K. K. Berggren},
  journal= {arXiv preprint arXiv:2308.15228},
  year   = {2023}
}
R2 v1 2026-06-28T12:07:15.735Z