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Fate of False Vacuum in Superconducting Flux Qubits

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arxiv 1411.7253 v1 pith:WGUUXSEH submitted 2014-11-26 cond-mat.supr-con hep-th

Fate of False Vacuum in Superconducting Flux Qubits

classification cond-mat.supr-con hep-th
keywords fluxdecayfalsequantumqubitratestatesuperconducting
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We propose a similarity between the scenario of fate of false vacuum in cosmology at early universe and the situation in where the quantum state decays in superconducting Flux qubit. This is due to the fact that both cases have two homogeneous stable equilibrium states in scalar field, which in quantum theory, could penetrate through the barrier in different possibilities and hence considered unstable decaying in time. In quantum computation, decay rate is among the most important factors in characteristics of the system like coherency, reliability, measurement fidelity, etc. In this considered potential, the decay rate from the penetrating (False vacuum) state to the stable (absolute minimum) state is achieved to leading order in Planck constant by the approach of Instanton model. In case of the superconducting flux qubit having thin barrier potential, the decay rate is calculated and its relations with actual set of parameters in flux qubit design are introduced.

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