Scientific Reports (Sep 2021)

Macroscopic and deterministic quantum feature generation via phase basis quantization in a cascaded interferometric system

  • Byoung S. Ham

DOI
https://doi.org/10.1038/s41598-021-98478-8
Journal volume & issue
Vol. 11, no. 1
pp. 1 – 7

Abstract

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Abstract Quantum entanglement is the quintessence of quantum information science governed by quantum superposition mostly limited to a microscopic regime. For practical applications, however, macroscopic entanglement has an essential benefit for quantum sensing and metrology to beat its classical counterpart. Recently, a coherence approach for entanglement generation has been proposed and demonstrated in a coupled interferometric system using classical laser light, where the quantum feature of entanglement has been achieved via phase basis superposition between identical interferometric systems. Such a coherence method is based on the wave nature of a photon without violating quantum mechanics under the complementarity theory. Here, a method of phase basis quantization via phase basis superposition is presented for macroscopic entanglement in an interferometric system, which is corresponding to the energy quantization of a photon.