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报告摘要: Quantum superconducting circuits are nanostructured superconducting electrical networks with Josephson junctions. At low temperatures, their quantum dynamics is described by using a few degrees of freedom with a collective character. The parameters in the Hamiltonian depend on the dimensions and topology of the circuit; superconducting quantum circuits therefore behave as artificial atoms. Superconducting quantum circuits have potential applications in quantum information processing and provide a testbed for the study of light-matter interaction in a new regime of ultra-strong interactions. The main focus of our research is quantum computing with flux-type superconducting quantum bits. I will discuss a new type of quantum gates applicable to two flux qubits which requires a minimum amount of resources. I will also describe experimental work in progress on the application of this method to a system formed of a few qubits and also the possible application of this scheme to electron spins in quantum dots.
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