Highly Controllable Qubit-Bath Coupling Based on a Sequence of Resonators
Combating the detrimental effects of noise remains a major challenge in realizing a scalable quantum computer. To help to address this challenge, we introduce a model realizing a controllable qubit-bath coupling using a sequence of LC resonators. The model establishes a strong coupling to a low-temp...
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Veröffentlicht in: | Journal of low temperature physics 2013-11, Vol.173 (3-4), p.152-169 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Combating the detrimental effects of noise remains a major challenge in realizing a scalable quantum computer. To help to address this challenge, we introduce a model realizing a controllable qubit-bath coupling using a sequence of LC resonators. The model establishes a strong coupling to a low-temperature environment which enables us to lower the effective qubit temperature making ground state initialization more efficient. The operating principle is similar to that of a recently proposed coplanar-waveguide cavity (CPW) system, for which our work introduces a complementary and convenient experimental realization. The lumped-element model utilized here provides an easily accessible theoretical description. We present analytical solutions for some experimentally feasible parameter regimes and study the control mechanism. Finally, we introduce a mapping between our model and the recent CPW system. |
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ISSN: | 0022-2291 1573-7357 |
DOI: | 10.1007/s10909-013-0889-3 |