Phys. Rev. Lett. 123, 063602 (2019)https://ireap.umd.edu/10.1103/PhysRevLett.123.0636022019
Ze-Pei Cian Guanyu Zhu Su-Kuan Chu Alireza Seif Wade DeGottardi Liang Jiang Mohammad Hafezi
Journal ArticleNonlinear and Quantum Photonics

Dissipation can usually induce detrimental decoherence in a quantum system. However, engineered dissipation can be used to prepare and stabilize coherent quantum many-body states. Here, we show that, by engineering dissipators containing photon pair operators, one can stabilize an exotic dark state, which is a condensate of photon pairs with a phase-nematic order. In this system, the usual superfluid order parameter, i.e., single-photon correlation, is absent, while the photon pair correlation exhibits long-range order. Although the dark state is not unique due to multiple parity sectors, we devise an additional type of dissipators to stabilize the dark state in a particular parity sector via a diffusive annihilation process which obeys Glauber dynamics in an Ising model. Furthermore, we propose an implementation of these photon pair dissipators in circuit-QED architecture.


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