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Long-range interacting quantum systems
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The presence of non-local and long-range interactions in quantum systems induces several peculiar features in their equilibrium and out-of-equilibrium behavior. In current experimental platforms control parameters such as interaction range, temperature, density and dimension can be changed. The existence of universal scaling regimes, where diverse physical systems and observables display quantitative agreement, generates a common framework, where the efforts of different research communities can be -- in some cases rigorously -- connected. Still, the application of this general framework to particular experimental realisations requires the identification of the regimes where the universality phenomenon is expected to appear. In the present review we summarise the recent investigations of many-body quantum systems with long-range interactions, which are currently realised in Rydberg atom arrays, dipolar systems, trapped ion setups and cold atoms in cavity experiments. Our main aim is to present and identify the common and (mostly) universal features induced by long-range interactions in the behaviour of quantum many-body systems. We will discuss both the case of very strong non-local couplings, i.e. the non-additive regime, and the one in which energy is extensive, but nevertheless low-energy, long wavelength properties are altered with respect to the short-range limit. Cases of competition with other local effects in the above mentioned setups are also reviewed.
Forward citations
Cited by 3 Pith papers
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1d Ising model with $1/r^{1.99}$ interaction
The authors propose a weakly coupled dual field theory for the 1D long-range Ising CFT near s = 1, derive an exact spectrum at s = 1, and find matching perturbative CFT data from RG and bootstrap calculations.
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False vacuum decay in long-range interacting quantum systems
In long-range Ising chains the false-vacuum bounce action scales as B∼h^{-1/σ} for σ<1 and recovers Coleman B∼h^{-1} (plus h^{σ-2} corrections) for 1<σ<2, with algebraic tails that leave the leading exponents intact.
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Electrical, thermal and thermoelectric transport in open long-range Kitaev chain
Electrical, thermal, and thermoelectric currents in an open long-range Kitaev chain show distinct features from the short-range chain, including a voltage threshold that reflects the mass of the Dirac edge modes.
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