Naval Research Laboratory, Washington, DC 20375, USA.
Phys Rev Lett. 2010 Aug 27;105(9):093601. doi: 10.1103/PhysRevLett.105.093601. Epub 2010 Aug 24.
We propose a method to generate a two-dimensional cluster state of polarization encoded photonic qubits from two coupled quantum dot emitters. We combine the proposal for generating one-dimensional cluster state strings from a single dot, with a new proposal for an induced conditional phase gate between the two quantum dots. The entanglement between the two dots translates to entanglement between the two photonic cluster state strings. Further interpair coupling of the quantum dots using cavities and waveguides can lead to a two-dimensional cluster sheet, the importance of which stems from the fact that it is a universal resource for quantum computation. Analysis of errors indicates that our proposal is feasible with current technology. Crucially, the emitted photons need not have identical frequencies, and so there are no constraints on the resonance energies for the quantum dots.
我们提出了一种从两个耦合量子点发射器生成二维偏振编码光子量子比特的方法。我们结合了从单个点生成一维簇态串的建议,以及在两个量子点之间引入条件相位门的新建议。两个点之间的纠缠转化为两个光子簇态串之间的纠缠。进一步使用腔和波导对量子点进行成对耦合,可以得到二维簇片,其重要性在于它是量子计算的通用资源。对误差的分析表明,我们的方案在当前技术下是可行的。关键是,发射的光子不需要具有相同的频率,因此对量子点的共振能没有限制。