Fabry -Perot filters with Tunable Josephson Junction Defects
arXiv:1507.06530 · doi:10.1016/j.physc.2015.07.010
Abstract
We propose to take advantage of the properties of long Josephson junctions to realize a frequency variable Fabry-Perot Filter that operates in the range 100-500 GHz with a bandwidth below 1 GHz. In fact, we show that it is possible to exploit the tunability of the effective impedance of the Josephson component, that is controlled by a dc bias, to tune, up to of the central frequency, the resonance of the system. An analysis of the linearized system indicates the range of operation and the main characteristic parameters Numerical simulations of the full nonlinear Josephson element confirm the behavior expected from the linear approximation.
To appear on Physica C
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Cited by in corpus (4)
- Effects of Lévy noise on the dynamics of sine-Gordon solitons in long Josephson junctions
- Topological pumping of photons in nonlinear resonator arrays
- Multistable Dissipative Breathers and Novel Collective States in SQUID Lieb Metamaterials
- Resonances and multistability in a Josephson junction connected to a resonator