Lead free heterogeneous multilayers with giant magneto electric coupling for microelectronics/microelectromechanical systems applications

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Lead free heterogeneous multilayers with giant magneto electric coupling for microelectronics/microelectromechanical systems applications

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dc.contributor.author Anantharaman, M R
dc.contributor.author Swapna, Nair S
dc.contributor.author Geetha, Pookat
dc.contributor.author Venkata, Saravanan
dc.date.accessioned 2014-08-02T05:16:07Z
dc.date.available 2014-08-02T05:16:07Z
dc.date.issued 2013-08-14
dc.identifier.uri http://dyuthi.cusat.ac.in/purl/4430
dc.description JOURNAL OF APPLIED PHYSICS 114, 064309 (2013) en_US
dc.description.abstract Lead free magneto electrics with a strong sub resonant (broad frequency range) magneto electric coupling coefficient (MECC) is the goal of the day which can revolutionise the microelectronics and microelectromechanical systems (MEMS) industry. We report giant resonant MECC in lead free nanograined Barium Titanate–CoFe (Alloy)-Barium Titanate [BTO-CoFe-BTO] sandwiched thin films. The resonant MECC values obtained here are the highest values recorded in thin films/ multilayers. Sub-resonant MECC values are quite comparable to the highest MECC reported in 2-2 layered structures. MECC got enhanced by two orders at a low frequency resonance. The results show the potential of these thin films for transducer, magnetic field assisted energy harvesters, switching devices, and storage applications. Some possible device integration techniques are also discussed en_US
dc.description.sponsorship Cochin University of Science and Technology en_US
dc.language.iso en en_US
dc.publisher AIP Publishing en_US
dc.title Lead free heterogeneous multilayers with giant magneto electric coupling for microelectronics/microelectromechanical systems applications en_US
dc.type Article en_US


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