Observation of Edge Magnetoplasmon Squeezing in a Quantum Hall Conductor

Squeezing of the quadratures of the electromagnetic field has been extensively studied in optics and microwaves. However, previous works focused on the generation of squeezed states in a low impedance (Z_{0}≈50  Ω) environment. We report here on the demonstration of the squeezing of bosonic edge mag...

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Veröffentlicht in:Physical review letters 2023-03, Vol.130 (10), p.106201-106201, Article 106201
Hauptverfasser: Bartolomei, H, Bisognin, R, Kamata, H, Berroir, J-M, Bocquillon, E, Ménard, G, Plaçais, B, Cavanna, A, Gennser, U, Jin, Y, Degiovanni, P, Mora, C, Fève, G
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Sprache:eng
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Zusammenfassung:Squeezing of the quadratures of the electromagnetic field has been extensively studied in optics and microwaves. However, previous works focused on the generation of squeezed states in a low impedance (Z_{0}≈50  Ω) environment. We report here on the demonstration of the squeezing of bosonic edge magnetoplasmon modes in a quantum Hall conductor whose characteristic impedance is set by the quantum of resistance (R_{K}≈25  kΩ), offering the possibility of an enhanced coupling to low-dimensional quantum conductors. By applying a combination of dc and ac drives to a quantum point contact, we demonstrate squeezing and observe a noise reduction 18% below the vacuum fluctuations. This level of squeezing can be improved by using more complex conductors, such as ac driven quantum dots or mesoscopic capacitors.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.130.106201