English

Nanobolometer with Ultralow Noise Equivalent Power

Instrumentation and Detectors 2020-08-12 v2 Mesoscale and Nanoscale Physics

Abstract

Since the introduction of bolometers more than a century ago, they have been applied in a broad spectrum of contexts ranging from security and the construction industry to particle physics and astronomy. However, emerging technologies and missions call for faster bolometers with lower noise. Here, we demonstrate a nanobolometer that exhibits roughly an order of magnitude lower noise equivalent power, 20 zW/Hz20\textrm{ zW}/\sqrt{\textrm{Hz}}, than previously reported for any bolometer. Importantly, it is more than an order of magnitude faster than other low-noise bolometers, with a time constant of 30 μ\mus at 60 zW/Hz60\textrm{ zW}/\sqrt{\textrm{Hz}}. These results suggest a calorimetric energy resolution of 0.3 zJ=h×0.40.3\textrm{ zJ}=h\times 0.4 THz with a time constant of 30 μ\mus. Thus the introduced nanobolometer is a promising candidate for future applications requiring extreme precision and speed such as those in astronomy and terahertz photon counting.

Keywords

Cite

@article{arxiv.1806.09397,
  title  = {Nanobolometer with Ultralow Noise Equivalent Power},
  author = {R. Kokkoniemi and J. Govenius and V. Vesterinen and R. E. Lake and A. M. Gunyho and K. Y. Tan and S. Simbierowicz and L. Grönberg and J. Lehtinen and M. Prunnila and J. Hassel and O. -P. Saira and M. Möttönen},
  journal= {arXiv preprint arXiv:1806.09397},
  year   = {2020}
}
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