... 17] S. V. Shitov, V. P. Koshelets, L. V. Filippenko, P. N. Dmitriev, V. L. Vaks, A. M. Baryshev, W. Luinge, N. D. Whyborn, and J.-R. Gao, IOP Conf. ...
... Metal Hot Electron Bolometer with Capacitive Coupling M. Tarasov1, 3, M. Fominskii1, 3, A. Kalabukhov2, 3, and L. Kuzmin2, 1 3 ... The normal metal film in the bolometer was 8 µm long, 0.2 µm wide, and 80 nm in thickness. ...
... Y nm 25.0 1.0 0.8 0.6 0.4 µm 0.2 25.0 0 0.25 0.50 0.75 1.00 µm 3. ... direct contact, is not the sum of their resistances if the Fermi momenta of the contacting materials are different [4, 17, 18 ...
... 2 2 2 10 -15 10 -13 0,77 1,75 -17 10 -16 75 -18 10 c -16 -19 I >> Ic 2 10 -17 10 -14 ... Y. Volkov, M. Liatti, V. V. Shirotov, V. V. Pavlovskii, U. Poppe, P. M. Shadrin, K ...
... M.A. Tarasov, E.A. Stepantsov, M. Naito, A. Tsukada, D. Winkler, A.S. Kalabukhov, M ... M. A. Tarasova, E. A. Stepantsovb, M. Naitoc, A. Tsukadac, D. Winklerd, A. S ... Bridges 6 µm in length and 6, 4, 1.5, and 0.85 µm in thickness, which intersected ...
... m(t) can be either proportional to some baseband information signal i(t) m(t ) = m0i ... Lets rewrite equation (12) as (13) v (t ) = m(t ) A + m(t ) y b (t ) + m(t ) y p (t ...
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