Quantum State Engineering Via Coherent-State Superpositions
József Janszky, Петер Адам, S. Szabó, P. Domokos
Abstract
Open-access reader
József Janszky, Петер Адам, S. Szabó, P. Domokos
Abstract
Open-access reader
The quantum interference between the two parts of the optical Schrodinger-cat state makes possible to construct a wide class of quantum states via discrete superpositions of coherent states. Even a small number of coherent states can approximate the given quantum states at a high accuracy when the distance between the coherent states is optimized, e. g. nearly perfect Fock state can be constructed by discrete superpositions of n + 1 coherent states lying in the vicinity of the vacuum state.
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The quantum interference between the two parts of the optical Schrodinger-cat state makes possible to construct a wide class of quantum states via discrete superpositions of coherent states. Even a small number of coherent states can approximate the given quantum states at a high accuracy when the distance between the coherent states is optimized, e. g. nearly perfect Fock state can be constructed by discrete superpositions of n + 1 coherent states lying in the vicinity of the vacuum state.
Key concepts: Coherent states, Coherent states in mathematical physics, Cluster state, Quantum state, Fock space, State (computer science), Quantum mechanics, Physics