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Science, 2009
Ultimate Simulator Many body problems are difficult to model analytically and are often so complex that they cannot be simulated accurately on a classical computer. Because quantum systems can be inherently correlated, it has been proposed that such systems could be used to simulate other complex problems.
Iulia, Buluta, Franco, Nori
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Ultimate Simulator Many body problems are difficult to model analytically and are often so complex that they cannot be simulated accurately on a classical computer. Because quantum systems can be inherently correlated, it has been proposed that such systems could be used to simulate other complex problems.
Iulia, Buluta, Franco, Nori
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Analogue quantum chemistry simulation [PDF]
Accepted version of the paper and minor ...
Javier Argüello-Luengo +2 more
exaly +9 more sources
Simulation on a quantum computer
Informatik - Forschung und Entwicklung, 2006A promising application of future quantum computers is the simulation of physical systems of a quantum nature. It has been estimated that a quantum computer operating with as few as 50–100 logical qubits would be capable of obtaining simulation results that are inaccessible to classical computers.
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AIP Conference Proceedings, 2014
Here, I summarize the results presented in B. Kraus, Phys. Rev. Lett. 107, 250503 (2011). Recently, it has been shown that certain circuits, the so-called match gate circuits, can be compressed to an exponentially smaller universal quantum computation. We use this result to demonstrate that the simulation of a 1-D Ising chain consisting of n qubits can
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Here, I summarize the results presented in B. Kraus, Phys. Rev. Lett. 107, 250503 (2011). Recently, it has been shown that certain circuits, the so-called match gate circuits, can be compressed to an exponentially smaller universal quantum computation. We use this result to demonstrate that the simulation of a 1-D Ising chain consisting of n qubits can
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QUANTUM-STATISTICAL SIMULATIONS FOR QUANTUM CIRCUITS
International Journal of Modern Physics C, 2002Using a Hubbard–Stratonovich like decomposition technique, we implemented simulations for the quantum circuits of Simon's algorithm for the detection of the periodicity of a function and Shor's algorithm for the factoring of prime numbers on a classical computer.
K. Fischer +3 more
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Science
Large-scale quantum processors are beginning to uncover new physical ...
Pedram, Roushan, Leigh, Martin
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Large-scale quantum processors are beginning to uncover new physical ...
Pedram, Roushan, Leigh, Martin
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Quantum simulations with quantum gases
2017 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC), 2017Remarkable advances in cooling and manipulating atomic gases have opened up new avenues to explore fundamental concepts in quantum many-body physics. Synthetically created potentials and control of atom-atom interactions have made it possible to tailor the properties of experimental systems at a microscopic level.
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Quantum simulation of fundamental particles and forces
Nature Reviews Physics, 2023Martin Savage +2 more
exaly
Quantum simulation of 2D antiferromagnets with hundreds of Rydberg atoms
Nature, 2021Daniel Barredo +2 more
exaly

