Quantum Cat states
- Y.X. Liu, L.F. Wei, F. Nori
Generation of non-classical photon states using a superconducting qubit in a quantum electrodynamic microcavity
Europhys. Lett. 67, 941-947 (2004). [PDF][Link][arXiv] - Y.X. Liu, L.F. Wei, F. Nori
Preparation of macroscopic quantum superposition states of a cavity field via coupling to a superconducting charge qubit
Phys. Rev. A 71, 063820 (2005). [PDF][Link][arXiv] - C.P. Sun, Y.X. Liu, L.F. Wei, F. Nori
Coherent photons and macroscopic cat states generated by a cyclic artificial atom with broken symmetry
(2005). [Link][arXiv] - S. Ashhab, F. Nori
Qubit-oscillator systems in the ultrastrong-coupling regime and their potential for preparing nonclassical states
Phys. Rev. A 81, 042311 (2010). [PDF][Link][arXiv] - X.Y. Lu, W.M. Zhang, S. Ashhab, Y. Wu, F. Nori
Quantum-criticality-induced strong Kerr nonlinearities in optomechanical systems
Scientific Reports 3, 2943 (2013). [PDF][Link][arXiv] - A. Miranowicz, M. Paprzycka, A. Pathak, F. Nori
Phase-space interference of states optically truncated by quantum scissors: Generation of distinct superpositions of qudit coherent states by displacement of vacuum
Phys. Rev. A 89, 033812 (2014). [PDF][Link][arXiv] -
X. Wang, A. Miranowicz, H.R. Li, F. Nori
Hybrid quantum device with a carbon nanotube and a flux qubit for dissipative quantum engineering
Phys. Rev. B 95, 205415 (2017). [PDF][Link][arXiv] -
C.P. Yang, Q.P. Su, S.B. Zheng, F. Nori, S. Han
Entangling two oscillators with arbitrary asymmetric initial states
Phys. Rev. A 95, 052341 (2017). [PDF][Link][arXiv] C.S. Munoz, A. Lara, J. Puebla, F. Nori
Hybrid Systems for the Generation of Nonclassical Mechanical States via Quadratic Interactions
Phys. Rev. Lett. 121, 123604 (2018). [PDF][Link][arXiv][Suppl. Info.]H.Y. Ku, N. Lambert, F.J. Chan, C. Emary, Y.N. Chen, F. Nori
Experimental test of non-macrorealistic cat states in the cloud
npj Quantum Information 6, 98 (2020). [PDF][Link_1][Link_2][arXiv]Y.H. Chen, W. Qin, X. Wang, A. Miranowicz, F. Nori
Shortcuts to Adiabaticity for the Quantum Rabi Model: Efficient Generation of Giant Entangled Cat States via Parametric Amplification
Phys. Rev. Lett. 126, 023602 (2021). [PDF][Link][arXiv][Suppl. Info.]Z.Y. Zhou, C. Gneiting, J.Q. You, F. Nori
Generating and detecting entangled cat states in dissipatively coupled degenerate optical parametric oscillators
Phys. Rev. A 104, 013715 (2021). [PDF][Link][arXiv]W. Qin, A. Miranowicz, H. Jing, F. Nori
Generating Long-Lived Macroscopically Distinct Superposition States in Atomic Ensembles
Phys. Rev. Lett. 127, 093602 (2021). [PDF][Link][arXiv][Suppl. Info.]Y.H. Kang, Y.H. Chen, X. Wang, J. Song, Y. Xia, A. Miranowicz, S.B. Zheng, F. Nori
Nonadiabatic geometric quantum computation with cat-state qubits via invariant-based reverse engineering
Phys. Rev. Research 4, 013233 (2022). [PDF][Link][arXiv]Z.Y. Zhou, C. Gneiting, J.Q. You, F. Nori
Coherent-cluster-state generation in networks of degenerate optical parametric oscillators
Phys. Rev. A 108, 023704 (2023). [PDF][Link][arXiv]Z.Y. Zhou, C. Gneiting, W. Qin, J.Q. You, F. Nori
Enhancing dissipative cat-state generation via nonequilibrium pump fields
Phys. Rev. A 106, 023714 (2022). [PDF][Link][arXiv]Y.H. Chen, R. Stassi, W. Qin, A. Miranowicz, F. Nori
Fault-Tolerant Multiqubit Geometric Entangling Gates Using Photonic Cat-State Qubits
Phys. Rev. Applied 18, 024076 (2022). [PDF][Link][arXiv]R.H. Zheng, W. Ning, Y.H. Chen, J.H. Lu, L.T. Shen, K. Xu, Y.R. Zhang, D. Xu, H. Li, Y. Xia, F. Wu, Z.B. Yang, A. Miranowicz, N. Lambert, D. Zheng, H. Fan, F. Nori, S.B. Zheng
Observation of a Superradiant Phase Transition with Emergent Cat States
Phys. Rev. Lett. 131, 113601 (2023). [PDF][Link][arXiv][Suppl. Info.]W. Qin, A. Miranowicz, F. Nori
Beating the 3 dB Limit for Intracavity Squeezing and Its Application to Nondemolition Qubit Readout
Phys. Rev. Lett. 129, 123602 (2022). [PDF][Link][arXiv][Suppl. Info.]R. Stassi, M. Cirio, K. Funo, J. Puebla, N. Lambert, F. Nori
Unveiling and veiling an entangled light-matter quantum state from the vacuum
Phys. Rev. Research 5, 043095 (2023). [PDF][Link][arXiv]