Metamaterial Nanomachines driven by heat, sound, electric and magnetic fields, and light
Metamaterial Nanomachines driven by heat, sound, electric and magnetic fields, and light
We review recent advances in the physics and technology of plasmonic and dielectric nanomechanical metamaterials, wherein optical and mechanical resonances can be coupled to provide a plethora of dynamic photonic functionalities. External electric, magnetic, thermal, acoustic and optical stimuli drive pico/nanometric displacements of the metamaterial building blocks, modulating optical properties at MHz frequencies.
MacDonald, Kevin F.
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Li, Jinxiang
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Liu, Tongjun
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Ou, Jun-Yu
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Papas, Dimitrios
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Plum, Eric
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Zheludev, Nikolai
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1 August 2021
MacDonald, Kevin F.
76c84116-aad1-4973-b917-7ca63935dba5
Li, Jinxiang
736c69a2-23ca-474f-a908-960235118fa8
Liu, Tongjun
53eb4a71-ea7b-4aa7-b96d-b70c5df1dd63
Ou, Jun-Yu
3fb703e3-b222-46d2-b4ee-75f296d9d64d
Papas, Dimitrios
cff74106-c632-4f06-a2ff-55b204fab699
Plum, Eric
50761a26-2982-40df-9153-7aecc4226eb5
Zheludev, Nikolai
32fb6af7-97e4-4d11-bca6-805745e40cc6
MacDonald, Kevin F., Li, Jinxiang, Liu, Tongjun, Ou, Jun-Yu, Papas, Dimitrios, Plum, Eric and Zheludev, Nikolai
(2021)
Metamaterial Nanomachines driven by heat, sound, electric and magnetic fields, and light.
SPIE Optics & Photonics 2021, San Diego, Virtual, United States.
01 - 05 Aug 2021.
(doi:10.1117/12.2594665).
Record type:
Conference or Workshop Item
(Paper)
Abstract
We review recent advances in the physics and technology of plasmonic and dielectric nanomechanical metamaterials, wherein optical and mechanical resonances can be coupled to provide a plethora of dynamic photonic functionalities. External electric, magnetic, thermal, acoustic and optical stimuli drive pico/nanometric displacements of the metamaterial building blocks, modulating optical properties at MHz frequencies.
Text
SPIE O&P2021 - nanomechanics
- Accepted Manuscript
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Published date: 1 August 2021
Venue - Dates:
SPIE Optics & Photonics 2021, San Diego, Virtual, United States, 2021-08-01 - 2021-08-05
Identifiers
Local EPrints ID: 447224
URI: http://eprints.soton.ac.uk/id/eprint/447224
PURE UUID: ba5bc8ae-20da-465c-9c35-a80a66bfa358
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Date deposited: 05 Mar 2021 17:30
Last modified: 17 Mar 2024 06:24
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