Elastic metamaterials for tuning circular polarization of electromagnetic waves

被引:0
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作者
Yair Zárate
Sahab Babaee
Sung H. Kang
Dragomir N. Neshev
Ilya V. Shadrivov
Katia Bertoldi
David A. Powell
机构
[1] Nonlinear Physics Centre and Centre for Ultrahigh-bandwidth Devices for Optical Systems (CUDOS),Department of Mechanical Engineering and Hopkins Extreme Materials Institute
[2] Research School of Physics and Engineering,undefined
[3] The Australian National University,undefined
[4] John A. Paulson School of Engineering and Applied Sciences,undefined
[5] Harvard University,undefined
[6] Johns Hopkins University,undefined
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摘要
Electromagnetic resonators are integrated with advanced elastic material to develop a new type of tunable metamaterial. An electromagnetic-elastic metamaterial able to switch on and off its electromagnetic chiral response is experimentally demonstrated. Such tunability is attained by harnessing the unique buckling properties of auxetic elastic materials (buckliballs) with embedded electromagnetic resonators. In these structures, simple uniaxial compression results in a complex but controlled pattern of deformation, resulting in a shift of its electromagnetic resonance and in the structure transforming to a chiral state. The concept can be extended to the tuning of three-dimensional materials constructed from the meta-molecules, since all the components twist and deform into the same chiral configuration when compressed.
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