Quantum Computing with Spin Cluster Qubits 论文

2003Physical Review Letters引用 261
Quantum and electron transport phenomenaQuantum Information and CryptographyQuantum many-body systems

详细信息

发表期刊/会议
Physical Review Letters
发表日期
2003-01-27
发表年份
2003

关键词

Quantum and electron transport phenomenaQuantum Information and CryptographyQuantum many-body systems

摘要

We study the low energy states of finite spin chains with isotropic (Heisenberg) and anisotropic (XY and Ising-like) antiferromagnetic exchange interaction with uniform and nonuniform coupling constants. We show that for an odd number of sites a spin cluster qubit can be defined in terms of the ground state doublet. This qubit is remarkably insensitive to the placement and coupling anisotropy of spins within the cluster. One- and two-qubit quantum gates can be generated by magnetic fields and intercluster exchange, and leakage during quantum gate operation is small. Spin cluster qubits inherit the long decoherence times and short gate operation times of single spins. Control of single spins is hence not necessary for the realization of universal quantum gates.

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