Perpetual emulation threshold of PT-symmetric Hamiltonians

Abstract

We describe a technique to emulate a two-level -symmetric spin Hamiltonian, replete with gain and loss, using only the unitary dynamics of a larger quantum system. This we achieve by embedding the two-level system in question in a subspace of a four-level Hamiltonian. Using an amplitude recycling scheme that couples the levels exterior to the -symmetric subspace, we show that it is possible to emulate the desired behaviour of the -symmetric Hamiltonian without depleting the exterior, reservoir levels. We are thus able to extend the emulation time indefinitely, despite the non-unitary dynamics. We propose a realistic experimental implementation using dynamically decoupled magnetic sublevels of ultracold atoms.

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