Engineered two-photon loss mitigates single-photon loss in TPD-Kerr systems by converting oscillatory decay to monotonic and extending metrological windows over an order of magnitude via non-Gaussian cat states.
Dynamically protected cat-qubits: a new 12 paradigm for universal quantum computation
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A photonic cavity creates a chirality-controlled rotating pinning potential that performs branch-conditioned braiding of non-Abelian anyons and maps the result onto measurable cavity coherence.
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Quantum metrology via mitigation of single-photon loss using an engineered nonlinear oscillator
Engineered two-photon loss mitigates single-photon loss in TPD-Kerr systems by converting oscillatory decay to monotonic and extending metrological windows over an order of magnitude via non-Gaussian cat states.
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Photonic Chirality for Braiding and Readout of Non-Abelian Anyons
A photonic cavity creates a chirality-controlled rotating pinning potential that performs branch-conditioned braiding of non-Abelian anyons and maps the result onto measurable cavity coherence.
- Coherent control of spinmons