We study three-body Schrödinger operators in one and two dimensions modelling an exciton interacting with a charged impurity. We consider certain classes of multiplicative interaction potentials proposed in the physics literature. We show that if the impurity charge is larger than some critical value, then three-body bound states cannot exist. Our spectral results are confirmed by variational numerical computations based on projecting on a finite dimensional subspace generated by a Gaussian basis
We study excitonic states of an atomic impurity in a Fermi gas, i.e., bound states consisting of the...
Journal ArticleThe theory of three-body bound states for particles moving on a lattice and interacti...
The authors show that for the three-dimensional Schrodinger equation without spherical symmetry the ...
The formation of bound states involving multiple particles underlies many interesting quantum physic...
On three-dimensional lattice we consider a system of three quantum particles (two of them are identi...
20 pages, 5 figuresThe one-dimensional problem of N particles with contact interaction in the presen...
We develop the impurity lattice Monte Carlo formalism, for the case of two distinguishable impuritie...
We consider three one-dimensional quantum, charged and spinless particles interacting through delta ...
We investigate the ground-state energy of a one-dimensional Fermi gas with two bosonic impurities. W...
The nuclear 3-body problem in which two particles are identical is investigated, by assuming separab...
he realization of mixtures of excitons and charge carriers in van der Waals materials presents a fro...
Abstract. In this note we sharpen the lower bound from [LLP10] on the spectrum of the 2D Schrödinge...
International audienceIn this Letter we investigate the properties of an impurity immersed in a supe...
We report a comprehensive study of the ground-state properties of one and two bosonic impurities imm...
We present an exact-diagonalization study of the momentum dependence of the single-particle Green's ...
We study excitonic states of an atomic impurity in a Fermi gas, i.e., bound states consisting of the...
Journal ArticleThe theory of three-body bound states for particles moving on a lattice and interacti...
The authors show that for the three-dimensional Schrodinger equation without spherical symmetry the ...
The formation of bound states involving multiple particles underlies many interesting quantum physic...
On three-dimensional lattice we consider a system of three quantum particles (two of them are identi...
20 pages, 5 figuresThe one-dimensional problem of N particles with contact interaction in the presen...
We develop the impurity lattice Monte Carlo formalism, for the case of two distinguishable impuritie...
We consider three one-dimensional quantum, charged and spinless particles interacting through delta ...
We investigate the ground-state energy of a one-dimensional Fermi gas with two bosonic impurities. W...
The nuclear 3-body problem in which two particles are identical is investigated, by assuming separab...
he realization of mixtures of excitons and charge carriers in van der Waals materials presents a fro...
Abstract. In this note we sharpen the lower bound from [LLP10] on the spectrum of the 2D Schrödinge...
International audienceIn this Letter we investigate the properties of an impurity immersed in a supe...
We report a comprehensive study of the ground-state properties of one and two bosonic impurities imm...
We present an exact-diagonalization study of the momentum dependence of the single-particle Green's ...
We study excitonic states of an atomic impurity in a Fermi gas, i.e., bound states consisting of the...
Journal ArticleThe theory of three-body bound states for particles moving on a lattice and interacti...
The authors show that for the three-dimensional Schrodinger equation without spherical symmetry the ...