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Quantum mechanics / Optics / Photonics / Laser science / Laser / Quantum computer / Qubit / Quantum optics / Cavity quantum electrodynamics / Physics / Theoretical computer science / Quantum information science


3-3 Trapping and Cooling of Ions for Quantum Information Processing HAYASAKA Kazuhiro, UETAKE Satoshi, and IMAJO Hidetsuka In quantum networks quantum information is processed by exchanging quantum states between physica
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Document Date: 2013-11-21 18:44:42


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City

Lancaster / /

Company

Perot / /

Facility

MaxPlanck Institute / Max-Planck Institute / National Institute of Information / /

IndustryTerm

energy levels / information processing / gas cell / quantum information processing / quantum computation algorithm / ion trap technologies / The technology / energy / temporal energy shift / energy states / quantum network / alkaline-metal-like ion species / physical systems / hyperfine energy structure / large scale quantum computing / /

Organization

Max-Planck Institute for Quantum Optics / National Institute of Information / MaxPlanck Institute for Quantum Optics / /

Person

D. Leibfried / K. Matsubara / S. Uetake / M. Watanabe / S. Urabe / C.S. Wood / A. Kreuter / C.A. Sackett / D. Kielpinski / M.A. Rowe / C. Becher / M. Kajita / W.M. Itano / Y. Li / C.R. Monroe / B. DeMarco / V / R. Blatt / M. Hosokawa / F. Schmidt-Kaler / K. Hayasaka / C. Monroe / H. Walther / M. Keller / W. Lange / D.J. Wineland / J. Eschner / B. Lange / /

Position

Researcher / Quantum Information Technology Group / Senior Researcher / Quantum Information Technology Group / candidate for quantum computation and quantum state transfer / King / /

Technology

quantum computation algorithm / Information Technology / microwave / Communications Technology / second technology / laser system / The technology / laser / cryptography / lasers / third technology / ion trap technologies / spectroscopy / radio frequency / technology of control / Three technologies / been developed using commercial violet diode lasers / /

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