Quantum modulation of a coherent state wavepacket with a single electron spin

The interaction of quantum objects lies at the heart of fundamental quantum physics and is key to a wide range of quantum information technologies. Photon-quantum-emitter interactions are among the most widely studied. Two-qubit interactions are generally simplified into two quantum objects in stati...

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Veröffentlicht in:arXiv.org 2022-07
Hauptverfasser: Androvitsaneas, P, Young, A B, Nutz, T, Lennon, J M, Mister, S, Schneider, C, Kamp, M, Höfling, S, McCutcheon, D P S, Harbord, E, Rarity, J G, Oulton, R
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Sprache:eng
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Zusammenfassung:The interaction of quantum objects lies at the heart of fundamental quantum physics and is key to a wide range of quantum information technologies. Photon-quantum-emitter interactions are among the most widely studied. Two-qubit interactions are generally simplified into two quantum objects in static well-defined states . In this work we explore a fundamentally new dynamic type of spin-photon interaction. We demonstrate modulation of a coherent narrowband wavepacket with another truly quantum object, a quantum dot with ground state spin degree of freedom. What results is a quantum modulation of the wavepacket phase (either 0 or {\pi} but no values in between), a new quantum state of light that cannot be described classically.
ISSN:2331-8422