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Journal ArticleDOI

Exact analysis of an interacting bose gas. i. the general solution and the ground state

Elliott H. Lieb, +1 more
- 15 May 1963 - 
- Vol. 130, Iss: 4, pp 1605-1616
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TLDR
In this paper, the ground-state energy as a function of γ was derived for all γ, except γ = 0, and it was shown that Bogoliubov's perturbation theory is valid when γ is small.
Abstract
A gas of one-dimensional Bose particles interacting via a repulsive delta-function potential has been solved exactly. All the eigenfunctions can be found explicitly and the energies are given by the solutions of a transcendental equation. The problem has one nontrivial coupling constant, γ. When γ is small, Bogoliubov’s perturbation theory is seen to be valid. In this paper, we explicitly calculate the ground-state energy as a function of γ and show that it is analytic for all γ, except γ=0. In Part II, we discuss the excitation spectrum and show that it is most convenient to regard it as a double spectrum—not one as is ordinarily supposed.

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Citations
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Journal ArticleDOI

Exact analysis of a δ-function spin-1/2 attractive Fermi gas with arbitrary polarization

TL;DR: In this article, the ground state of a one-dimensional δ-function attractive spin-1/2 fermions is studied by the nested Bethe ansatz method, and the Gaudin integral equation for the system is solved in the form of power series with arbitrary spin polarization.
Journal ArticleDOI

Binding between two-component bosons in one dimension

TL;DR: In this article, the ground state of one-dimensional few-atom Bose-Bose mixtures under harmonic confinement was investigated, and the condition for the formation of a molecular Tonks-Girardeau gas in the regime of intermediate inter-species interactions, and for stronger coupling.
Journal ArticleDOI

Completely integrable model of interacting q-bosons

TL;DR: In this paper, the Hamiltonian for a new quantum q-boson lattice model in 1+1 dimensions was constructed and the solution for its eigenstates and eigenvalues was given.
Journal ArticleDOI

Drude Weight for the Lieb-Liniger Bose Gas

TL;DR: In this paper, the authors derived a concise formula for the Drude weight of the repulsive Lieb-Liniger $\delta$-Bose gas, which contains only quantities which are obtainable from the thermodynamic Bethe ansatz.
Journal ArticleDOI

Edge States at Phase Boundaries and Their Stability

TL;DR: In this article, the effects of Robin boundary conditions on quantum field theories of spin 0, 1 and 1/2 were analyzed and it was shown that these conditions always lead to the appearance of edge states that play a significant role in quantum Hall effect and topological insulators.
References
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Book

A Course of Modern Analysis

TL;DR: The volume now gives a somewhat exhaustive account of the various ramifications of the subject, which are set out in an attractive manner and should become indispensable, not only as a textbook for advanced students, but as a work of reference to those whose aim is to extend the knowledge of analysis.
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Relationship between Systems of Impenetrable Bosons and Fermions in One Dimension

TL;DR: In this article, a rigorous one-one correspondence between one-dimensional systems of bosons and spinless fermions is established, subject only to the restriction that the interaction has an impenetrable core.
Journal ArticleDOI

Exact Analysis of an Interacting Bose Gas. II. The Excitation Spectrum

Elliott H. Lieb
- 15 May 1963 - 
TL;DR: In this paper, the analysis of the one-dimensional gas of Bose particles interacting via a repulsive delta function potential by considering the excitation spectrum was carried out and it was shown that the elementary excitations are most naturally thought of as a double spectrum, not a single one.
Journal ArticleDOI

Linear antiferromagnetic chain with anisotropic coupling

TL;DR: In this article, the exact solution for a linear chain of spin atoms coupled together by the anisotropic Hamiltonian was given for the antiferromagnetic ground state and comparison was made with a variational method.
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