Coherent control of a symmetry-engineered multi-qubit dark state in waveguide quantum electrodynamics
arXiv:2106.05623 · doi:10.1038/s41567-022-01527-w
Abstract
Quantum information is typically encoded in the state of a qubit that is decoupled from the environment. In contrast, waveguide quantum electrodynamics studies qubits coupled to a mode continuum, exposing them to a loss channel and causing quantum information to be lost before coherent operations can be performed. Here we restore coherence by realizing a dark state that exploits symmetry properties and interactions between four qubits. Dark states decouple from the waveguide and are thus a valuable resource for quantum information but also come with a challenge: they cannot be controlled by the waveguide drive. We overcome this problem by designing a drive that utilizes the symmetry properties of the collective state manifold allowing us to selectively drive both bright and dark states. The decay time of the dark state exceeds that of the waveguide-limited single qubit by more than two orders of magnitude. Spectroscopy on the second excitation manifold provides further insight into the level structure of the hybridized system. Our experiment paves the way for implementations of quantum many-body physics in waveguides and the realization of quantum information protocols using decoherence-free subspaces.
main paper: 8 pages, 4 figures supplementary material: 10 pages, 7 figures, 1 table
References in corpus (12)
- Charge insensitive qubit design derived from the Cooper pair box
- Chiral Quantum Optics
- Photon-mediated interactions between distant artificial atoms
- Spectral signatures of many-body localization with interacting photons
- Decoherence benchmarking of superconducting qubits
- Efficient and robust analysis of complex scattering data under noise in microwave resonators
- Observation of Dicke Superradiance for Two Artificial Atoms in a Cavity with High Decay Rate
- Microwave Quantum Link between Superconducting Circuits Housed in Spatially Separated Cryogenic Systems
- Measurement of Autler-Townes and Mollow transitions in a strongly driven superconducting qubit
- Quantum State Transfer via Noisy Photonic and Phononic Waveguides
- Realizing a Deterministic Source of Multipartite-Entangled Photonic Qubits
- Many-body localization in waveguide QED
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