Preparing multi-partite entanglement of photons and matter qubits

P. Kok, S. Barrett, T. Spiller
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引用次数: 5

Abstract

We show how to make event-ready multi-partite entanglement between qubits which may be encoded on photons or matter systems. Entangled states of matter systems, which can also act as single photon sources, can be generated using the entangling operation presented in Barrett and Kok (2004 Preprint quant-ph/0408040). We show how to entangle such sources with photon qubits, which may be encoded in the dual-rail, polarization or time-bin degrees of freedom. We subsequently demonstrate how projective measurements of the matter qubits can be used to create entangled states of the photons alone. The state of the matter qubits is inherited by the generated photons. Since the entangling operation can be used to generate cluster states of matter qubits for quantum computing, our procedure enables us to create any (entangled) photonic quantum state that can be written as the outcome of a quantum computer.
制备光子和物质量子比特的多部纠缠
我们展示了如何在光子或物质系统上编码的量子比特之间制造事件准备多部纠缠。物质系统的纠缠态,也可以作为单光子源,可以使用Barrett和Kok (2004 Preprint quant-ph/0408040)中提出的纠缠操作产生。我们展示了如何将这些源与光子量子比特纠缠在一起,光子量子比特可以在双轨道、偏振或时间库自由度中进行编码。我们随后演示了如何使用物质量子位的投影测量来单独创建光子的纠缠态。物质量子比特的状态由产生的光子继承。由于纠缠操作可用于生成用于量子计算的物质量子比特的簇态,因此我们的程序使我们能够创建任何(纠缠的)光子量子态,这些光子量子态可以写入量子计算机的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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