Gyrator Based on Magneto-elastic Coupling at a Ferromagnetic/Piezoelectric Interface

Abstract A gyrator is a non-reciprocal two port device with 180° phase shift in the transmissions between two ports. Though electromagnetic realizations of gyrators have been well studied, devices based on other forms of interaction are relatively unexplored. Here we demonstrate a device in which si...

Full description

Bibliographic Details
Main Authors: Swapnil Bhuktare, Arnab Bose, Hanuman Singh, Ashwin A. Tulapurkar
Format: Article
Language:English
Published: Nature Publishing Group 2017-04-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-017-00960-9
id doaj-30cad9c0cae64761a2dba24818d0d2d5
record_format Article
spelling doaj-30cad9c0cae64761a2dba24818d0d2d52020-12-08T03:05:57ZengNature Publishing GroupScientific Reports2045-23222017-04-01711610.1038/s41598-017-00960-9Gyrator Based on Magneto-elastic Coupling at a Ferromagnetic/Piezoelectric InterfaceSwapnil Bhuktare0Arnab Bose1Hanuman Singh2Ashwin A. Tulapurkar3Department of Electrical Engineering, Indian Institute of Technology-BombayDepartment of Electrical Engineering, Indian Institute of Technology-BombayDepartment of Electrical Engineering, Indian Institute of Technology-BombayDepartment of Electrical Engineering, Indian Institute of Technology-BombayAbstract A gyrator is a non-reciprocal two port device with 180° phase shift in the transmissions between two ports. Though electromagnetic realizations of gyrators have been well studied, devices based on other forms of interaction are relatively unexplored. Here we demonstrate a device in which signal is transmitted via magneto-elastic coupling, can function as a gyrator. The device is built on a piezoelectric substrate: one port of this device has interdigital transducers (IDTs) and the other port has a periodic array of nickel/gold lines. When the magnetizations of Ni lines are excited into precession by magnetic field generated by passing oscillating current through the gold lines, they emit phonons in the form of surface acoustic waves (SAW) due to the magneto-elastic coupling between Ni and substrate. The emitted SAW can be detected at the other end by the IDTs. Conversely, when SAW is incident on Ni lines from IDTs, the magnetization undergoes precession and can be inductively detected by Au lines. The broken time reversal symmetry of the system due to the presence of ferromagnet gives rise to the non-reciprocal transmission between the two ports. These devices could function as novel building blocks for phonon based information processing.https://doi.org/10.1038/s41598-017-00960-9
collection DOAJ
language English
format Article
sources DOAJ
author Swapnil Bhuktare
Arnab Bose
Hanuman Singh
Ashwin A. Tulapurkar
spellingShingle Swapnil Bhuktare
Arnab Bose
Hanuman Singh
Ashwin A. Tulapurkar
Gyrator Based on Magneto-elastic Coupling at a Ferromagnetic/Piezoelectric Interface
Scientific Reports
author_facet Swapnil Bhuktare
Arnab Bose
Hanuman Singh
Ashwin A. Tulapurkar
author_sort Swapnil Bhuktare
title Gyrator Based on Magneto-elastic Coupling at a Ferromagnetic/Piezoelectric Interface
title_short Gyrator Based on Magneto-elastic Coupling at a Ferromagnetic/Piezoelectric Interface
title_full Gyrator Based on Magneto-elastic Coupling at a Ferromagnetic/Piezoelectric Interface
title_fullStr Gyrator Based on Magneto-elastic Coupling at a Ferromagnetic/Piezoelectric Interface
title_full_unstemmed Gyrator Based on Magneto-elastic Coupling at a Ferromagnetic/Piezoelectric Interface
title_sort gyrator based on magneto-elastic coupling at a ferromagnetic/piezoelectric interface
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2017-04-01
description Abstract A gyrator is a non-reciprocal two port device with 180° phase shift in the transmissions between two ports. Though electromagnetic realizations of gyrators have been well studied, devices based on other forms of interaction are relatively unexplored. Here we demonstrate a device in which signal is transmitted via magneto-elastic coupling, can function as a gyrator. The device is built on a piezoelectric substrate: one port of this device has interdigital transducers (IDTs) and the other port has a periodic array of nickel/gold lines. When the magnetizations of Ni lines are excited into precession by magnetic field generated by passing oscillating current through the gold lines, they emit phonons in the form of surface acoustic waves (SAW) due to the magneto-elastic coupling between Ni and substrate. The emitted SAW can be detected at the other end by the IDTs. Conversely, when SAW is incident on Ni lines from IDTs, the magnetization undergoes precession and can be inductively detected by Au lines. The broken time reversal symmetry of the system due to the presence of ferromagnet gives rise to the non-reciprocal transmission between the two ports. These devices could function as novel building blocks for phonon based information processing.
url https://doi.org/10.1038/s41598-017-00960-9
work_keys_str_mv AT swapnilbhuktare gyratorbasedonmagnetoelasticcouplingataferromagneticpiezoelectricinterface
AT arnabbose gyratorbasedonmagnetoelasticcouplingataferromagneticpiezoelectricinterface
AT hanumansingh gyratorbasedonmagnetoelasticcouplingataferromagneticpiezoelectricinterface
AT ashwinatulapurkar gyratorbasedonmagnetoelasticcouplingataferromagneticpiezoelectricinterface
_version_ 1724392922748551168