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Universal Digital Quantum Simulation with Trapped Ions
by
Gerritsma, R.
, Zoller, P.
, Hempel, C.
, Schindler, P.
, Blatt, R.
, Rambach, M.
, Nigg, D.
, Hennrich, M.
, Roos, C. F.
, Barreiro, J. T.
, Müller, M.
, Zähringer, F.
, Lanyon, B. P.
, Kirchmair, G.
in
Classical and quantum physics: mechanics and fields
/ Classical mechanics of discrete systems: general mathematical aspects
/ Computers
/ Devices
/ Digital
/ Dynamical systems
/ Dynamics
/ Exact sciences and technology
/ Gates
/ Ground state
/ Information processing
/ Ions
/ Lasers
/ Magnetic fields
/ Modeling
/ Particle interactions
/ Physics
/ Quantum efficiency
/ Quantum entanglement
/ Quantum physics
/ Qubits (quantum computing)
/ Simulation
/ simulation models
/ Simulations
2011
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Universal Digital Quantum Simulation with Trapped Ions
by
Gerritsma, R.
, Zoller, P.
, Hempel, C.
, Schindler, P.
, Blatt, R.
, Rambach, M.
, Nigg, D.
, Hennrich, M.
, Roos, C. F.
, Barreiro, J. T.
, Müller, M.
, Zähringer, F.
, Lanyon, B. P.
, Kirchmair, G.
in
Classical and quantum physics: mechanics and fields
/ Classical mechanics of discrete systems: general mathematical aspects
/ Computers
/ Devices
/ Digital
/ Dynamical systems
/ Dynamics
/ Exact sciences and technology
/ Gates
/ Ground state
/ Information processing
/ Ions
/ Lasers
/ Magnetic fields
/ Modeling
/ Particle interactions
/ Physics
/ Quantum efficiency
/ Quantum entanglement
/ Quantum physics
/ Qubits (quantum computing)
/ Simulation
/ simulation models
/ Simulations
2011
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Do you wish to request the book?
Universal Digital Quantum Simulation with Trapped Ions
by
Gerritsma, R.
, Zoller, P.
, Hempel, C.
, Schindler, P.
, Blatt, R.
, Rambach, M.
, Nigg, D.
, Hennrich, M.
, Roos, C. F.
, Barreiro, J. T.
, Müller, M.
, Zähringer, F.
, Lanyon, B. P.
, Kirchmair, G.
in
Classical and quantum physics: mechanics and fields
/ Classical mechanics of discrete systems: general mathematical aspects
/ Computers
/ Devices
/ Digital
/ Dynamical systems
/ Dynamics
/ Exact sciences and technology
/ Gates
/ Ground state
/ Information processing
/ Ions
/ Lasers
/ Magnetic fields
/ Modeling
/ Particle interactions
/ Physics
/ Quantum efficiency
/ Quantum entanglement
/ Quantum physics
/ Qubits (quantum computing)
/ Simulation
/ simulation models
/ Simulations
2011
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Journal Article
Universal Digital Quantum Simulation with Trapped Ions
2011
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Overview
A digital quantum simulator is an envisioned quantum device that can be programmed to efficiently simulate any other local system. We demonstrate and investigate the digital approach to quantum simulation in a system of trapped ions. With sequences of up to 100 gates and 6 qubits, the full time dynamics of a range of spin systems are digitally simulated. Interactions beyond those naturally present in our simulator are accurately reproduced, and quantitative bounds are provided for the overall simulation quality. Our results demonstrate the key principles of digital quantum simulation and provide evidence that the level of control required for a full-scale device is within reach.
Publisher
American Association for the Advancement of Science,The American Association for the Advancement of Science
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