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Beilstein J. Nanotechnol. 2022, 13, 1578–1588, doi:10.3762/bjnano.13.132
Figure 1: (a, c) Layouts of the studied meander and linear arrays. The meander array in (a) contains seven me...
Figure 2: (a) Fraunhofer-type modulation of the critical current as a function of in-plane magnetic field for...
Figure 3: Ensembles of the I–V characteristics with different numbers of active JJs for the meander array at T...
Figure 4: (a) An integrated oscillogram for the linear array at T = 2.4 K and for an in-plane field H = 7 Oe....
Figure 5: (a) Parts of the V–I curves near the main resonance for the meander array with different number of ...
Figure 6: (a) Optical image of a superconducting detector with a log-periodic microwave antenna. (b) SEM imag...
Figure 7: (a, b) The I–V characteristics (integrated oscillograms) of the meander array acquired at (a) H = 8...
Figure 8: (a) Parts of the I–V characteristics of the meander array near the main resonance. (b) The main ste...
Figure 9: Detected power as a function of the number of active junctions for two modes from Figure 7b at bias currents...
Beilstein J. Nanotechnol. 2022, 13, 1445–1457, doi:10.3762/bjnano.13.119
Figure 1: (a) Geometry of sample-1 with 332 JJs in each of the three linear arrays. (b) Two enlarged fragment...
Figure 2: IVCs of outer array-a (rigth axis) and adjacent inner array-b (left axis) of sample-1 (a) and sampl...
Figure 3: (a, b) IVCs of the outer array-a in sample-1 (a) and corresponding bolometer signal (b) when the in...
Figure 4: The data set for the IVCs of the outer array-a in sample-2 (a) and for the corresponding bolometer ...
Figure 5: (a) View of the measurement scheme with two JJ arrays on different substrates formed in a stack. Ea...
Figure 6: (a) The simulated scheme consisting of two identical JJ arrays on a common substrate. Each array ha...
Figure 7: (a, b) Distribution of work of JJs under the EM field (a) and of the phase shift between ac voltage...