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- W3148814963 abstract "In quantum optomechanics, finding materials and strategies to limit losses has been crucial to the progress of the field. Recently, superfluid 4He was proposed as a promising mechanical element for quantum optomechanics. This quantum fluid shows highly desirable properties (e.g. extremely low acoustic loss) for a quantum optomechanical system. In current implementations, superfluid optomechanical systems suffer from external sources of loss, which spoils the quality factor of resonators. In this work, we propose a new implementation, exploiting nanofluidic confinement. Our approach, based on acoustic resonators formed within phononic nanostructures, aims at limiting radiation losses to preserve the intrinsic properties of superfluid 4He. In this work, we estimate the optomechanical system parameters. Using recent theory, we derive the expected quality factors for acoustic resonators in different thermodynamic conditions. We calculate the sources of loss induced by the phononic nanostructures with numerical simulations. Our results indicate the feasibility of the proposed approach in a broad range of parameters, which opens new prospects for more complex geometries." @default.
- W3148814963 created "2021-04-13" @default.
- W3148814963 creator A5011827835 @default.
- W3148814963 creator A5024123511 @default.
- W3148814963 creator A5061053042 @default.
- W3148814963 creator A5078625839 @default.
- W3148814963 date "2021-03-31" @default.
- W3148814963 modified "2023-10-15" @default.
- W3148814963 title "Superfluid Optomechanics With Phononic Nanostructures" @default.
- W3148814963 cites W1580410164 @default.
- W3148814963 cites W1965183221 @default.
- W3148814963 cites W1965198243 @default.
- W3148814963 cites W1965573884 @default.
- W3148814963 cites W1970547240 @default.
- W3148814963 cites W1970813336 @default.
- W3148814963 cites W1974259095 @default.
- W3148814963 cites W1982324887 @default.
- W3148814963 cites W1982991836 @default.
- W3148814963 cites W1983837740 @default.
- W3148814963 cites W1996233171 @default.
- W3148814963 cites W1999508338 @default.
- W3148814963 cites W2000218650 @default.
- W3148814963 cites W2004264609 @default.
- W3148814963 cites W2007366494 @default.
- W3148814963 cites W2008122983 @default.
- W3148814963 cites W2010931483 @default.
- W3148814963 cites W2015332144 @default.
- W3148814963 cites W2016784692 @default.
- W3148814963 cites W2024340062 @default.
- W3148814963 cites W2027231421 @default.
- W3148814963 cites W2029604900 @default.
- W3148814963 cites W2032090893 @default.
- W3148814963 cites W2047971115 @default.
- W3148814963 cites W2049766662 @default.
- W3148814963 cites W2052607875 @default.
- W3148814963 cites W2053884017 @default.
- W3148814963 cites W2054453325 @default.
- W3148814963 cites W2055180690 @default.
- W3148814963 cites W2059729016 @default.
- W3148814963 cites W2060415336 @default.
- W3148814963 cites W2061829085 @default.
- W3148814963 cites W2064931691 @default.
- W3148814963 cites W2065190974 @default.
- W3148814963 cites W2068129357 @default.
- W3148814963 cites W2070442288 @default.
- W3148814963 cites W2072281189 @default.
- W3148814963 cites W2074383155 @default.
- W3148814963 cites W2074633245 @default.
- W3148814963 cites W2079460204 @default.
- W3148814963 cites W2080310169 @default.
- W3148814963 cites W2083643720 @default.
- W3148814963 cites W2087115042 @default.
- W3148814963 cites W2089485265 @default.
- W3148814963 cites W2098182023 @default.
- W3148814963 cites W2139031855 @default.
- W3148814963 cites W2161321945 @default.
- W3148814963 cites W2195370283 @default.
- W3148814963 cites W2252827992 @default.
- W3148814963 cites W2285334793 @default.
- W3148814963 cites W2297104750 @default.
- W3148814963 cites W2316690496 @default.
- W3148814963 cites W2322185592 @default.
- W3148814963 cites W2327039264 @default.
- W3148814963 cites W2470251869 @default.
- W3148814963 cites W2480741257 @default.
- W3148814963 cites W2493927811 @default.
- W3148814963 cites W2533526309 @default.
- W3148814963 cites W2535729183 @default.
- W3148814963 cites W2597452437 @default.
- W3148814963 cites W2744340341 @default.
- W3148814963 cites W2750813466 @default.
- W3148814963 cites W2767974045 @default.
- W3148814963 cites W2800919450 @default.
- W3148814963 cites W2889059010 @default.
- W3148814963 cites W2915088635 @default.
- W3148814963 cites W2949343706 @default.
- W3148814963 cites W2959168841 @default.
- W3148814963 cites W2963938179 @default.
- W3148814963 cites W2964296545 @default.
- W3148814963 cites W2966516986 @default.
- W3148814963 cites W2969781686 @default.
- W3148814963 cites W3007085904 @default.
- W3148814963 cites W3024692958 @default.
- W3148814963 cites W3037306418 @default.
- W3148814963 cites W3042251580 @default.
- W3148814963 cites W3093491027 @default.
- W3148814963 cites W3100918847 @default.
- W3148814963 cites W3101207023 @default.
- W3148814963 cites W3101410104 @default.
- W3148814963 cites W3103516013 @default.
- W3148814963 cites W3103867588 @default.
- W3148814963 cites W3103897266 @default.
- W3148814963 cites W3105280522 @default.
- W3148814963 cites W3105365657 @default.
- W3148814963 cites W3105414222 @default.
- W3148814963 cites W3106355870 @default.
- W3148814963 cites W3123301929 @default.
- W3148814963 cites W3125248991 @default.
- W3148814963 cites W930220367 @default.
- W3148814963 doi "https://doi.org/10.1103/physrevapplied.15.034090" @default.