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Quantum information processing using electromagnetically induced transparency

机译:使用电磁感应透明性的量子信息处理

摘要

Quantum information processing structures and methods use photons and four-level matter systems in electromagnetically induced transparency (EIT) arrangements for one and two-qubit quantum gates, two-photon phase shifters, and Bell state measurement devices. For efficient coupling of the matter systems to the photons while decoupling the matter systems from the phonon bath, molecular cages or molecular tethers maintain the atoms within the electromagnetic field of the photon, e.g., in the evanescent field surrounding the core of an optical fiber carrying the photons. To reduce decoherence caused by spontaneous emissions, the matter systems can be embedded in photonic bandgap crystals or the matter systems can be selected to include metastable energy levels.
机译:量子信息处理结构和方法将光子和四能级系统用于电磁感应透明(EIT)装置中,用于一量子位和二量子位的量子门,二光子移相器和贝尔状态测量设备。为了有效地将物质系统与光子耦合,同时将物质系统与声子浴解耦,分子笼或分子束带将原子保持在光子的电磁场内,例如,在围绕载有光导纤维的芯的渐逝场中光子。为了减少由自发发射引起的退相干,可以将物质系统嵌入光子带隙晶体中,或者可以选择物质系统以包括亚稳态能级。

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