AbstractWe study the XY antiferromagnet with S=1 and single-ion anisotropy on a triangular lattice using the bond operator formalism in two cases: the J1−J2 model, which includes a next-nearest-neighbor coupling J2, and the spatially-anisotropic J1−J1′ model, in which the nearest-neighbor interaction takes a value J1′ along one of the bond directions. The introduction of frustrating second-neighbor interactions leads, at intermediate values of the coupling, to the existence of a disordered phase with the possibility of a quantum liquid behavior. The effect of the frustration on the quantum phase transition is studied. The phase diagrams at T=0 are presented
In this doctoral dissertation, we investigate two magnetic systems on the triangular lattice. The ge...
We study the spin-1/2 and spin-1 Heisenberg antiferromagnets (HAFs) on an infinite, anisotropic, two...
We present an extensive overview of the phase diagram, spin-wave excitations, and finite-temperature...
AbstractWe study the XY antiferromagnet with S=1 and single-ion anisotropy on a triangular lattice u...
AbstractWe study the effect of frustration between nearest and next-nearest neighbors of the quantum...
The Heisenberg model on a triangular lattice is a prime example for a geometrically frustrated spin ...
AbstractThe quantum anisotropic antiferromagnetic Heisenberg model with single ion anisotropy, spin ...
The Heisenberg model on a triangular lattice is a prime example for a geometrically frustrated spin ...
The Heisenberg model on a triangular lattice is a prime example for a geometrically frustrated spin ...
AbstractWe study the effect of frustration between nearest and next-nearest neighbors of the quantum...
AbstractMotivated by the fact that the study of disordered phases at zero temperature is of great in...
In a recent study [Phys. Rev. X 10, 021042 (2020)], we showed using large-scale density matrix renor...
In a recent study [Phys. Rev. X 10, 021042 (2020)], we showed using large-scale density matrix renor...
In this article we review the effects of magnetic frustration in the stacked triangular lattice. Fru...
We propose to realize the anisotropic triangular-lattice Bose-Hubbard model with positive tunneling ...
In this doctoral dissertation, we investigate two magnetic systems on the triangular lattice. The ge...
We study the spin-1/2 and spin-1 Heisenberg antiferromagnets (HAFs) on an infinite, anisotropic, two...
We present an extensive overview of the phase diagram, spin-wave excitations, and finite-temperature...
AbstractWe study the XY antiferromagnet with S=1 and single-ion anisotropy on a triangular lattice u...
AbstractWe study the effect of frustration between nearest and next-nearest neighbors of the quantum...
The Heisenberg model on a triangular lattice is a prime example for a geometrically frustrated spin ...
AbstractThe quantum anisotropic antiferromagnetic Heisenberg model with single ion anisotropy, spin ...
The Heisenberg model on a triangular lattice is a prime example for a geometrically frustrated spin ...
The Heisenberg model on a triangular lattice is a prime example for a geometrically frustrated spin ...
AbstractWe study the effect of frustration between nearest and next-nearest neighbors of the quantum...
AbstractMotivated by the fact that the study of disordered phases at zero temperature is of great in...
In a recent study [Phys. Rev. X 10, 021042 (2020)], we showed using large-scale density matrix renor...
In a recent study [Phys. Rev. X 10, 021042 (2020)], we showed using large-scale density matrix renor...
In this article we review the effects of magnetic frustration in the stacked triangular lattice. Fru...
We propose to realize the anisotropic triangular-lattice Bose-Hubbard model with positive tunneling ...
In this doctoral dissertation, we investigate two magnetic systems on the triangular lattice. The ge...
We study the spin-1/2 and spin-1 Heisenberg antiferromagnets (HAFs) on an infinite, anisotropic, two...
We present an extensive overview of the phase diagram, spin-wave excitations, and finite-temperature...