Experimental Violation Of Bell-like Inequalities By Electronic Shot Noise
arXiv:1410.0552 · doi:10.1103/PhysRevLett.114.130403
Abstract
Quantum electronic noise, the random current fluctuations generated by electrons crossing a quantum conductor, has been thoroughly studied from the electron point of view. Recent experiments have shown that such noise may have striking properties in terms of the quantum electromagnetic field it generates. Both the existence of vacuum squeezing \cite{PAN_squeezing} and generation of correlated photon pairs \cite{C4quantique} have been observed. Here we demonstrate that this electromagnetic field also violates Bell-like inequalities, thereby proving its true quantum nature. This is achieved by the observation of two-mode quadrature squeezing of vacuum: the electromagnetic field quadratures at two different frequencies can be so correlated that their difference goes below vacuum fluctuations. Thus, electronic noise contains entangled photon pairs, a key ingredient for quantum computing and communication.
5 pages, 4 figures
References in corpus (9)
- Experimental criteria for steering and the Einstein-Podolsky-Rosen paradox
- Generating Entangled Microwave Radiation Over Two Transmission Lines
- Measurements of the Correlation Function of a Microwave Frequency Single Photon Source
- Path Entanglement of Continuous-Variable Quantum Microwaves
- Dynamics of Quantum Noise in a Tunnel Junction under ac Excitation
- Planck Spectroscopy and the Quantum Noise of Microwave Beam Splitters
- Antibunched photons emitted by a quantum point contact out of equilibrium
- Experimental characterization of Gaussian quantum communication channels
- Emission of Microwave Photon Pairs by a Tunnel Junction
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- Observation of two-mode squeezing in a traveling wave parametric amplifier
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- Photon-pair blockade in a Josephson-photonics circuit with two nondegenerate microwave resonators
- AC driven strongly correlated quantum circuits and Hall edge states: Unified photo-assisted noise and revisited minimal excitations
- Non-Classical Radiation Emission By A Coherent Conductor
- Counting statistics of ultra-broadband microwave photons
- Suppression of the radiation squeezing in interacting quantum Hall edge channels