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NMR Based Quantum Information Processing: Achievements and Prospects

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arxiv quant-ph/0004104 v1 pith:DBBID3MC submitted 2000-04-27 quant-ph

classification quant-ph
keywords quantumcomplexityqubitsstateinformationliquidnumberprocessing
verification ladder T0 review T1 audit T2 compute T3 formal
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Nuclear magnetic resonance (NMR) provides an experimental setting to explore physical implementations of quantum information processing (QIP). Here we introduce the basic background for understanding applications of NMR to QIP and explain their current successes, limitations and potential. NMR spectroscopy is well known for its wealth of diverse coherent manipulations of spin dynamics. Ideas and instrumentation from liquid state NMR spectroscopy have been used to experiment with QIP. This approach has carried the field to a complexity of about 10 qubits, a small number for quantum computation but large enough for observing and better understanding the complexity of the quantum world. While liquid state NMR is the only present-day technology about to reach this number of qubits, further increases in complexity will require new methods. We sketch one direction leading towards a scalable quantum computer using spin 1/2 particles. The next step of which is a solid state NMR-based QIP capable of reaching 10-30 qubits.

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