Multimode Photon Blockade with a Reversed Design Method

Author:

Zhou Yan‐Hui1ORCID,Liu Tong1,Zhang Xing‐Yuan2,Wu Qi‐Cheng1,Chen Dong‐Xu1,Shi Zhi‐Cheng3,Yang Chui‐Ping4ORCID

Affiliation:

1. Quantum Information Research Center Jiangxi Province Key Laboratory of Applied Optical Technology (2024SSY03051) Shangrao Normal University Shangrao 334001 China

2. Department of Physics Dalian Maritime University Dalian 116026 China

3. Department of Physics Fuzhou University Fuzhou 350116 China

4. Department of Physics Hangzhou Normal University Hangzhou 311121 China

Abstract

AbstractRecently, a groundbreaking advancement known as multimode photon blockade (MPB) is proposed by S. Chakram et al. [Nature. Phys. 18, 879‐884 (2022)], showcasing its ability to generate multimode W states. Inspired by their work, in this paper, an interesting method is proposed to investigate MPB by engineering the eigenstates of the system Hamiltonian, which is defined as the reverse design method. It is demonstrated that an entangled state is created with a certain probability by sharing a single photon between two coupled Kerr‐nonlinear cavities. This entangled state in the two‐coupled cavities blocks the creation of the subsequent photons. The system is in a superposition of only the entangled state and the vacuum state. And the photon blockade (PB) exists in two cavities simultaneously. The reversed design method can also be utilized to study MPB in three coupled cavities with Kerr nonlinearities by creating a three‐qubit W state.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Jiangxi Province

Publisher

Wiley

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