Difference between revisions of "Quantum simulator"
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This work <ref>Quantum Simulators: Architectures and Opportunities. Altman et. al</ref> Systems: atomic, molecular, optical, solid state. Being built gated quantum dots and photonic arrays. Possible areas of research are: | This work <ref>Quantum Simulators: Architectures and Opportunities. Altman et. al</ref> Systems: atomic, molecular, optical, solid state. Being built gated quantum dots and photonic arrays. Possible areas of research are: | ||
| − | # Quantum materials simulation | + | # Quantum materials simulation. |
| + | ## pseudo-gap | ||
| + | ## strange metals | ||
| + | ## the quantum critical fan | ||
| + | ## heterostructures, | ||
| + | ## artificial lattice structures (quantum spin ice) | ||
| + | ## quantum generalizations of soft matter (the spin glass) | ||
# Quantum chemistry | # Quantum chemistry | ||
# | # | ||
| + | ==Cite== | ||
Revision as of 21:18, 2 January 2020
This work [1] Systems: atomic, molecular, optical, solid state. Being built gated quantum dots and photonic arrays. Possible areas of research are:
- Quantum materials simulation.
- pseudo-gap
- strange metals
- the quantum critical fan
- heterostructures,
- artificial lattice structures (quantum spin ice)
- quantum generalizations of soft matter (the spin glass)
- Quantum chemistry
Cite
- ↑ Quantum Simulators: Architectures and Opportunities. Altman et. al