Flux bias-controlled chaos and extreme multistability in SQUID oscillators
arXiv:1712.10244 · doi:10.1063/1.5020949
Abstract
The radio frequency (rf) Superconducting QUantum Interference Device (SQUID) is a highly nonlinear oscillator exhibiting rich dynamical behavior. It has been studied for many years and it has found numerous applications in magnetic field sensors, in biomagnetism, in non-destructive evaluation, and gradiometers, among others. Despite its theoretical and practical importance, there is relatively very little work on its multistability, chaotic properties, and bifurcation structure. In the present work, the dynamical properties of the SQUID in the strongly nonlinear regime are demonstrated using a well-established model whose parameters lie in the experimentally accessible range of values. When driven by a time-periodic (ac) flux either with or without a constant (dc) bias, the SQUID exhibits extreme multistability at frequencies around the (geometric) resonance. This effect is manifested by a "snake-like" form of the resonance curve. In the presence of both ac and dc flux, multiple bifurcation sequences and secondary resonance branches appear at frequencies above and below the geometric resonance. In the latter case, the SQUID exhibits chaotic behavior in large regions of the parameter space; it is also found that the state of the SQUID can be switched from chaotic to periodic or vice versa by a slight variation of the dc flux.
References in corpus (6)
- Chimera states: Coexistence of coherence and incoherence in networks of coupled oscillators
- A classification scheme for chimera states
- Progress in Superconducting Metamaterials
- Chimeras in SQUID Metamaterials
- Robust chimera states in SQUID metamaterials with local interactions
- Chimera states and synchronization in magnetically driven SQUID metamaterials
Cited by in corpus (8)
- Pattern formation and chimera states in 2D SQUID metamaterials
- Bifurcation structure and chaos in nanomagnet coupled to Josephson junction
- Multi-branched resonances, chaos through quasiperiodicity, and asymmetric states in a superconducting dimer
- Controlled Generation of Chimera States in SQUID Metasurfaces using DC Flux Gradients
- Chimera states in networks of locally and non-locally coupled SQUIDs
- Tuning of Strong Nonlinearity in rf SQUID Meta-Atoms
- Effects of Strong Capacitive Coupling Between Meta-Atoms in rf SQUID Metamaterials
- Synchronization transitions in a hyperchaotic SQUID Trimer