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  4. Nonreciprocal reconfigurable microwave optomechanical circuit
 
conference paper

Nonreciprocal reconfigurable microwave optomechanical circuit

Bernier, N. R.  
•
Toth, L. D.  
•
Koottandavida, A.
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January 1, 2018
2018 International Conference On Optical Mems And Nanophotonics (Omn)
International Conference on Optical MEMS and Nanophotonics (OMN)

Nonreciprocal devices, such as isolators, are required to protect sensitive superconducting quantum circuits. Growing research has focused on integrated alternatives to the existing bulky ferrite technologies. Here we realize a nonreciprocal isolator with a multimode microwave optomechanical circuit. Two mechanical oscillators mediate frequency conversion between two microwave modes. Relying on dissipation and the phases of the microwaves tones, the signals interfere constructively in one direction and destructively in the other, resulting in a nonreciprocal isolator. We show how this scheme can be extended to directional amplification and to a circulator, if an additional microwave mode is introduced.

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Type
conference paper
DOI
10.1109/OMN.2018.8454648
Web of Science ID

WOS:000454732000073

Author(s)
Bernier, N. R.  
Toth, L. D.  
Koottandavida, A.
Ioannou, M.
Malz, D.
Nunnenkamp, A.
Feofanov, A. K.  
Kippenberg, T. J.  
Date Issued

2018-01-01

Publisher

IEEE

Publisher place

New York

Published in
2018 International Conference On Optical Mems And Nanophotonics (Omn)
ISBN of the book

978-1-5090-6374-1

Series title/Series vol.

International Conference on Optical MEMS and Nanophotonics

Start page

151

End page

152

Subjects

Engineering, Electrical & Electronic

•

Nanoscience & Nanotechnology

•

Optics

•

Engineering

•

Science & Technology - Other Topics

•

Optics

•

superconducting circuits

•

cavity optomechanics

•

nonreciprocity

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LPQM  
Event nameEvent placeEvent date
International Conference on Optical MEMS and Nanophotonics (OMN)

Lausanne, SWITZERLAND

Jul 29-Aug 02, 2018

Available on Infoscience
January 23, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/153799
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