Splitting phonons: Building a platform for linear mechanical quantum computing

Linear optical quantum computing provides a desirable approach to quantum computing, with only a short list of required computational elements. The similarity between photons and phonons points to the interesting potential for linear mechanical quantum computing using phonons in place of photons. Al...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 2023-06, Vol.380 (6649), p.1030-1033
Hauptverfasser: Qiao, H, Dumur, É, Andersson, G, Yan, H, Chou, M-H, Grebel, J, Conner, C R, Joshi, Y J, Miller, J M, Povey, R G, Wu, X, Cleland, A N
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Sprache:eng
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Zusammenfassung:Linear optical quantum computing provides a desirable approach to quantum computing, with only a short list of required computational elements. The similarity between photons and phonons points to the interesting potential for linear mechanical quantum computing using phonons in place of photons. Although single-phonon sources and detectors have been demonstrated, a phononic beam splitter element remains an outstanding requirement. Here we demonstrate such an element, using two superconducting qubits to fully characterize a beam splitter with single phonons. We further use the beam splitter to demonstrate two-phonon interference, a requirement for two-qubit gates in linear computing. This advances a new solid-state system for implementing linear quantum computing, further providing straightforward conversion between itinerant phonons and superconducting qubits.
ISSN:0036-8075
1095-9203
DOI:10.1126/science.adg8715