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首页> 外文期刊>Physica, B. Condensed Matter >Thin spectrum states in bulk superconductors and superconducting grains
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Thin spectrum states in bulk superconductors and superconducting grains

机译:块状超导体和超导晶粒中的薄光谱态

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We show how a local pairing model for superconductivity can be used to describe the symmetry breaking mechanism in exact analogy to the cases of quantum crystals and antiferromagnets. We find that there are low energy states associated with the symmetry breaking process which are not influenced by the Anderson–Higgs mechanism. The presence of these ‘thin spectrum’ states in qubits based on superconducting material leads to a maximum time for which such qubits can remain quantum coherent. We also show how the charging energy of superconducting quantum dots may give the thin spectrum states a finite energy gap, impeding the spontaneous breaking of phase symmetry.
机译:我们展示了如何使用超导性的局部配对模型来描述对称破坏机理,与量子晶体和反铁磁体的情况完全相似。我们发现与对称破坏过程相关的低能态不受安德森-希格斯机制的影响。在基于超导材料的量子比特中存在这些“薄频谱”状态会导致此类量子比特保持量子相干的最大时间。我们还展示了超导量子点的充电能量如何使窄谱态具有有限的能隙,从而阻止了相对称性的自发破坏。

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