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Quantum Mechanics
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The article was published on 1961-01-01 and is currently open access. It has received 20079 citations till now. The article focuses on the topics: Adiabatic quantum computation.read more
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Quantum mechanical pure states with gaussian wave functions
TL;DR: In this article, the authors examined single-mode and two-mode Gaussian pure states (GPS), quantum mechanical pure states with Gaussian wave functions, and derived many of the important properties of GPS and of the Hamiltonians and unitary operators associated with them.
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Non-standard Hubbard models in optical lattices: a review
Omjyoti Dutta,Mariusz Gajda,Philipp Hauke,Philipp Hauke,Maciej Lewenstein,Dirk-Sören Lühmann,Boris A. Malomed,Tomasz Sowiński,Jakub Zakrzewski +8 more
TL;DR: The main part of the review discusses the importance of additional terms appearing when refining the tight-binding approximation for the original physical Hamiltonian, and the effects related to higher Bloch bands also become important even for deep optical lattices.
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Determination of product population and alignment using laser‐induced fluorescence
Chris H. Greene,Richard N. Zare +1 more
TL;DR: In this paper, the anisotropy of the laser-induced fluorescence is given explicitly in terms of the zeroth, second, and fourth rank moments of the angular momentum distribution, which, respectively, are proportional to the population, quadrupole alignment, and hexadecapole alignment of the product internal state under study.
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The solution of the hypernetted‐chain approximation for fluids of nonspherical particles. A general method with application to dipolar hard spheres
P. H. Fries,G. N. Patey +1 more
TL;DR: In this article, a general method for the numerical solution of the full hypernetted-chain (HNC) theory for fluids characterized by angle-dependent pair potentials is described, and detailed comparisons are made with previous theories and computer simulation results.
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Light-Front Holography: A First Approximation to QCD
TL;DR: The result is a single-variable light-front Schrödinger equation for QCD which determines the eigenspectrum and the light- front wave functions of hadrons for general spin and orbital angular momentum.