Generating higher order quantum dissipation from lower order parametric processes
Stabilization of quantum manifolds is at the heart of error-protected quantum information storage and manipulation. Nonlinear driven-dissipative processes achieve such stabilization in a hardware efficient manner. Josephson circuits with parametric pump drives implement these nonlinear interactions....
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Zusammenfassung: | Stabilization of quantum manifolds is at the heart of error-protected quantum
information storage and manipulation. Nonlinear driven-dissipative processes
achieve such stabilization in a hardware efficient manner. Josephson circuits
with parametric pump drives implement these nonlinear interactions. In this
article, we propose a scheme to engineer a four-photon drive and dissipation on
a harmonic oscillator by cascading experimentally demonstrated two-photon
processes. This would stabilize a four-dimensional degenerate manifold in a
superconducting resonator. We analyze the performance of the scheme using
numerical simulations of a realizable system with experimentally achievable
parameters. |
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DOI: | 10.48550/arxiv.1612.04341 |