Absence of State Collapse and Revival in a Superconducting Charge Qubit
Huo Wen-Yi, Long Gui-Lu
Abstract
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Huo Wen-Yi, Long Gui-Lu
Abstract
Open-access reader
The Hamiltonian of a superconducting charge qubit with a configuration of dc SQUID contains an interaction between the LC oscillator part and charge qubit. This interaction may leads to quantum state collapse and revival which degrades the charge qubits and leads to serious decoherence. An analysis shows that the existing charge qubit parameters do not lead to this phenomenon, which is very good for the superconducting charge qubit.
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The Hamiltonian of a superconducting charge qubit with a configuration of dc SQUID contains an interaction between the LC oscillator part and charge qubit. This interaction may leads to quantum state collapse and revival which degrades the charge qubits and leads to serious decoherence. An analysis shows that the existing charge qubit parameters do not lead to this phenomenon, which is very good for the superconducting charge qubit.
Key concepts: Charge qubit, Qubit, Phase qubit, Flux qubit, Physics, Charge (physics), Superconductivity, Quantum mechanics