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Search for "photon counter" in Full Text gives 4 result(s) in Beilstein Journal of Nanotechnology.

Frontiers of nanoelectronics: intrinsic Josephson effect and prospects of superconducting spintronics

  • Anatolie S. Sidorenko,
  • Horst Hahn and
  • Vladimir Krasnov

Beilstein J. Nanotechnol. 2023, 14, 79–82, doi:10.3762/bjnano.14.9

Graphical Abstract
  • a very high responsivity at 77 K (up to 9 kV/W), low noise equivalent power (NEP) of 3 × 10−13 W/Hz(1/2), and with a wide power dynamic range equal to 1 × 106 [18]. Integrating an aluminum Josephson junction, with a size of a few micrometers, operating as a single photon counter in the microwave
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Editorial
Published 10 Jan 2023

Approaching microwave photon sensitivity with Al Josephson junctions

  • Andrey L. Pankratov,
  • Anna V. Gordeeva,
  • Leonid S. Revin,
  • Dmitry A. Ladeynov,
  • Anton A. Yablokov and
  • Leonid S. Kuzmin

Beilstein J. Nanotechnol. 2022, 13, 582–589, doi:10.3762/bjnano.13.50

Graphical Abstract
  • photon counter in the microwave frequency range. We have measured the switching from the superconducting to the resistive state through the absorption of 10 GHz photons. The dependence of the switching probability on the signal power suggests that the switching is initiated by the simultaneous absorption
  • of three and more photons, with a dark count time above 0.01 s. Keywords: Josephson junction; microwave photons; single photon counter; thermal activation; Introduction The development of a single photon counter (SPC) for microwave frequencies of tens of gigahertz has been required for several
  • switching probability, respectively. We begin our consideration of the Josephson junction as a photon counter with its current–voltage characteristic (see Figure 2a) and the determination of the critical current. All further analysis of experimental results and understanding of the energy relations of the
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Full Research Paper
Published 04 Jul 2022

Microwave photon detection by an Al Josephson junction

  • Leonid S. Revin,
  • Andrey L. Pankratov,
  • Anna V. Gordeeva,
  • Anton A. Yablokov,
  • Igor V. Rakut,
  • Victor O. Zbrozhek and
  • Leonid S. Kuzmin

Beilstein J. Nanotechnol. 2020, 11, 960–965, doi:10.3762/bjnano.11.80

Graphical Abstract
  • through the JJ is observed, which resembles the differentiation between N and N + 1 photon absorption. Keywords: aluminium; Josephson junction; microwaves; phase diffusion; photon counter; switching current distribution; Introduction Currently, an important problem is the creation of single-photon
  • -photon counter described in [4]. We study the possibility of detecting photons in the gigahertz frequency range using an aluminium Josephson junction with a suppressed critical current. The main requirement to this counter is an extremely large lifetime (thousands of seconds), orders of magnitude larger
  • Kramers’ theory [32][33]. The exit of the particle from the well due to fluctuations does not lead to the instantaneous appearance of a final voltage at the Josephson junction, which can be seen in experiment as an increase of the noise immunity of the system. The principle of operation of a single-photon
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Full Research Paper
Published 23 Jun 2020

Charge carrier mobility and electronic properties of Al(Op)3: impact of excimer formation

  • Andrea Magri,
  • Pascal Friederich,
  • Bernhard Schäfer,
  • Valeria Fattori,
  • Xiangnan Sun,
  • Timo Strunk,
  • Velimir Meded,
  • Luis E. Hueso,
  • Wolfgang Wenzel and
  • Mario Ruben

Beilstein J. Nanotechnol. 2015, 6, 1107–1115, doi:10.3762/bjnano.6.112

Graphical Abstract
  • yield in solid state was estimated by the absolute method using an integrating sphere [44]. The lifetimes were obtained on a time-correlated single photon counter (TCSPC) equipped with a NanoLED source and a Horiba Jobin-Yvon Fluorohub for the data elaboration. TFT fabrication and characterization The
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Published 05 May 2015
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