4noWe show strong numerical evidence in favor of an unexpected virtually gapless spectrum, with edge states localized at the boundaries, in frustrated spin-1/2 antiferromagnetic ladders with an odd number of legs. These features can be accurately reproduced by using a projected BCS wave function with a nontrivial pairing that mixes even and odd reflection symmetries. This approach gives the correct classification of the excitations and provides a simple and very appealing picture of an unconventional spin-liquid phase stabilized by frustration.nonenoneBecca F; CAPRIOTTI L; PAROLA A; Sorella SBecca, F; Capriotti, L; Parola, A; Sorella,
By direct calculations of the spin gap in the frustrated Heisenberg model on the square lattice, wit...
AbstractThe quasi-spin correlations in a frustrated quantum spin ladder with one-half magnetization ...
Motivated by the ever-increasing experimental effort devoted to the properties of frustrated quantum...
We show strong numerical evidence in favor of an unexpected virtually gapless spectrum, with edge st...
We study excitations in weakly interacting pairs of quantum spin ladders coupled through geometrical...
Quantum antiferromagnets have proven to be some of the cleanest realizations available for theoretic...
The quantum phases of two-leg spin-1/2 ladders with skewed rungs are obtained using exact diagonaliz...
The quantum phases of two-leg spin-1/2 ladders with skewed rungs are obtained using exact diagonaliz...
We use series expansions to study the excitation spectra of spin-1/2 antiferromagnets on anisotropic...
We construct frustrated antiferromagnetic spin ladders with m chains for which the exact ground stat...
Chandra VR, Ivanov N, Richter J. Frustrated spin ladder with alternating spin-1 and spin-1/2 rungs. ...
Quantum Monte Carlo simulations provide one of the more powerful and versatile numerical approaches ...
We investigate the interplay between frustration and zero-point quantum fluctuations in the ground s...
Magnetic frustration is a phenomenon arising in spin systems when spin interactions cannot all be sa...
We present a systematic investigation on the ground state of an asymmetric two-leg spin ladder (wher...
By direct calculations of the spin gap in the frustrated Heisenberg model on the square lattice, wit...
AbstractThe quasi-spin correlations in a frustrated quantum spin ladder with one-half magnetization ...
Motivated by the ever-increasing experimental effort devoted to the properties of frustrated quantum...
We show strong numerical evidence in favor of an unexpected virtually gapless spectrum, with edge st...
We study excitations in weakly interacting pairs of quantum spin ladders coupled through geometrical...
Quantum antiferromagnets have proven to be some of the cleanest realizations available for theoretic...
The quantum phases of two-leg spin-1/2 ladders with skewed rungs are obtained using exact diagonaliz...
The quantum phases of two-leg spin-1/2 ladders with skewed rungs are obtained using exact diagonaliz...
We use series expansions to study the excitation spectra of spin-1/2 antiferromagnets on anisotropic...
We construct frustrated antiferromagnetic spin ladders with m chains for which the exact ground stat...
Chandra VR, Ivanov N, Richter J. Frustrated spin ladder with alternating spin-1 and spin-1/2 rungs. ...
Quantum Monte Carlo simulations provide one of the more powerful and versatile numerical approaches ...
We investigate the interplay between frustration and zero-point quantum fluctuations in the ground s...
Magnetic frustration is a phenomenon arising in spin systems when spin interactions cannot all be sa...
We present a systematic investigation on the ground state of an asymmetric two-leg spin ladder (wher...
By direct calculations of the spin gap in the frustrated Heisenberg model on the square lattice, wit...
AbstractThe quasi-spin correlations in a frustrated quantum spin ladder with one-half magnetization ...
Motivated by the ever-increasing experimental effort devoted to the properties of frustrated quantum...