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@ARTICLE{Ebrahimzadeh:885503,
      author       = {Ebrahimzadeh, P. and Schiek, Michael and Jaros, P. and
                      Kapitaniak, T. and van Waasen, S. and Maistrenko, Y.},
      title        = {{M}inimal chimera states in phase-lag coupled mechanical
                      oscillators},
      journal      = {European physical journal special topics},
      volume       = {229},
      number       = {12-13},
      issn         = {1951-6401},
      address      = {Heidelberg},
      publisher    = {Springer},
      reportid     = {FZJ-2020-03883},
      pages        = {2205 - 2214},
      year         = {2020},
      abstract     = {We obtain experimental chimera states in the minimal
                      network of three identical mechanical oscillators
                      (metronomes), by introducing phase-lagged all-to-all
                      coupling. For this, we have developed a real-time
                      model-in-the-loop coupling mechanism that allows for
                      flexible and online change of coupling topology, strength
                      and phase-lag. The chimera states manifest themselves as a
                      mismatch of average frequency between two synchronous and
                      one desynchronized oscillator. We find this kind of striking
                      “chimeric” behavior is robust in a wide parameter
                      region. At other parameters, however, chimera state can lose
                      stability and the system behavior manifests itself as a
                      heteroclinic switching between three saddle-type chimeras.
                      Our experimental observations are in a qualitative agreement
                      with the model simulation.},
      cin          = {ZEA-2},
      ddc          = {530},
      cid          = {I:(DE-Juel1)ZEA-2-20090406},
      pnm          = {574 - Theory, modelling and simulation (POF3-574) /
                      Advanced Computing Architectures $(aca_20190115)$ / HITEC -
                      Helmholtz Interdisciplinary Doctoral Training in Energy and
                      Climate Research (HITEC) (HITEC-20170406)},
      pid          = {G:(DE-HGF)POF3-574 / $G:(DE-Juel1)aca_20190115$ /
                      G:(DE-Juel1)HITEC-20170406},
      typ          = {PUB:(DE-HGF)16},
      UT           = {WOS:000575419700005},
      doi          = {10.1140/epjst/e2020-900270-4},
      url          = {https://juser.fz-juelich.de/record/885503},
}