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September 20, 2013Physical Review Letters302 citationsOpen Access

Hardware-Efficient Autonomous Quantum Memory Protection

ZLZaki LeghtasGKGerhard KirchmairBVBrian Vlastakis

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Abstract

We propose to encode a quantum bit of information in a superposition of coherent states of an oscillator, with four different phases. Our encoding in a single cavity mode, together with a protection protocol, significantly reduces the error rate due to photon loss. This protection is ensured by an efficient quantum error correction scheme employing the nonlinearity provided by a single physical qubit coupled to the cavity. We describe in detail how to implement these operations in a circuit quantum electrodynamics system. This proposal directly addresses the task of building a hardware-efficient quantum memory and can lead to important shortcuts in quantum computing architectures.

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Cite This Study

Leghtas et al. (2013) studied this question.

synapsesocial.com/papers/6a1bec511567d2fc4d5f43aahttps://doi.org/10.1103/physrevlett.111.120501
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