We present a comprehensive computational study of the phase diagram of the frustrated S = 1/2 Heisenberg antiferromagnet on the honeycomb lattice, with second-nearest (J(2)) and third-neighbor (J(3)) couplings. Using a combination of exact diagonalizations (EDs) of the original spin model, of the Hamiltonian projected into the nearest-neighbor short-range valence-bond basis, and of an effective quantum dimer model, as well as a self-consistent cluster mean-field theory, we determine the boundaries of several magnetically ordered phases in the region J(2), J(3) is an element of [0,1], and find a sizable magnetically disordered region in between. We characterize part of this magnetically disordered phase as a plaquette valence-bond crystal ph...
We use the coupled-cluster method in high orders of approximation to make a comprehensive study of t...
We use the coupled-cluster method in high orders of approximation to make a comprehensive study of t...
We use the coupled-cluster method in high orders of approximation to make a comprehensive study of t...
We present a comprehensive computational study of the phase diagram of the frustrated S = 1/2 Heisen...
3siUsing variational wave functions and Monte Carlo techniques, we study the antiferromagnetic Heise...
We study the ground-state phase diagram of the frustrated spin- antiferromagnet with J2 = xJ1 > 0 (J...
We study the ground-state phase diagram of the frustrated spin- antiferromagnet with J2 = xJ1 > 0 (J...
We use quantum Monte Carlo methods to study the ground-state phase diagram of a S=1/2 honeycomb latt...
We study the ground-state phase diagram of the frustrated spin- antiferromagnet with J2 = xJ1 > 0 (J...
We use the coupled-cluster method in high orders of approximation to make a comprehensive study of t...
We study the ground-state (gs) phase diagram of the frustrated spin-12 J1–J2–J3 antiferromagnet with...
We use quantum Monte Carlo methods to study the ground-state phase diagram of a S=1/2 honeycomb latt...
We study the ground-state (gs) phase diagram of the frustrated spin-12 J1–J2–J3 antiferromagnet with...
We study the ground-state (gs) phase diagram of the frustrated spin-12 J1–J2–J3 antiferromagnet with...
We study the ground-state (gs) phase diagram of the frustrated spin-12 J1–J2–J3 antiferromagnet with...
We use the coupled-cluster method in high orders of approximation to make a comprehensive study of t...
We use the coupled-cluster method in high orders of approximation to make a comprehensive study of t...
We use the coupled-cluster method in high orders of approximation to make a comprehensive study of t...
We present a comprehensive computational study of the phase diagram of the frustrated S = 1/2 Heisen...
3siUsing variational wave functions and Monte Carlo techniques, we study the antiferromagnetic Heise...
We study the ground-state phase diagram of the frustrated spin- antiferromagnet with J2 = xJ1 > 0 (J...
We study the ground-state phase diagram of the frustrated spin- antiferromagnet with J2 = xJ1 > 0 (J...
We use quantum Monte Carlo methods to study the ground-state phase diagram of a S=1/2 honeycomb latt...
We study the ground-state phase diagram of the frustrated spin- antiferromagnet with J2 = xJ1 > 0 (J...
We use the coupled-cluster method in high orders of approximation to make a comprehensive study of t...
We study the ground-state (gs) phase diagram of the frustrated spin-12 J1–J2–J3 antiferromagnet with...
We use quantum Monte Carlo methods to study the ground-state phase diagram of a S=1/2 honeycomb latt...
We study the ground-state (gs) phase diagram of the frustrated spin-12 J1–J2–J3 antiferromagnet with...
We study the ground-state (gs) phase diagram of the frustrated spin-12 J1–J2–J3 antiferromagnet with...
We study the ground-state (gs) phase diagram of the frustrated spin-12 J1–J2–J3 antiferromagnet with...
We use the coupled-cluster method in high orders of approximation to make a comprehensive study of t...
We use the coupled-cluster method in high orders of approximation to make a comprehensive study of t...
We use the coupled-cluster method in high orders of approximation to make a comprehensive study of t...