General Quantum Fidelity Susceptibilities for the J1-J2 Chain
arXiv:1110.0353 · doi:10.1103/PhysRevB.84.224435
Abstract
We study slightly generalized quantum fidelity susceptibilities where the differential change in the fidelity is measured with respect to a different term than the one used for driving the system towards a quantum phase transition. As a model system we use the spin-1/2 J1-J2 antiferromagnetic Heisenberg chain. For this model, we study three fidelity susceptibilities, chi_p, chi_D and chi_AF, which are related to the spin stiffness, the dimer order and antiferromagnetic order, respectively. All these ground-state fidelity susceptibilities are sensitive to the phase diagram of the J1-J2 model. We show that they all can accurately identify a quantum critical point in this model occurring at J2 = 0.241J1 between a gapless Heisenberg phase for J2 < J2_critical and a dimerized phase for J2 > J2_critical. This phase transition, in the Berezinskii-Kosterlitz-Thouless universality class, is controlled by a marginal operator and is therefore particularly difficult to observe.
References in corpus (12)
- Fidelity, dynamic structure factor, and susceptibility in critical phenomena
- Quantum critical scaling of the geometric tensors
- Ground-State Fidelity and Bipartite Entanglement in the Bose-Hubbard Model
- Conservation laws, integrability and transport in one-dimensional quantum systems
- Intrinsic relation between ground-state fidelity and the characterization of a quantum phase transition
- Quantum fidelity and quantum phase transitions in matrix product states
- Quantum phase transitions and quantum fidelity in free fermion graphs
- Ground-state fidelity in one-dimensional gapless model
- Fidelity and Quantum phase transition for the Heisenberg chain with the next-nearest-neighbor interaction
- Quantum Monte Carlo simulations of fidelity at magnetic quantum phase transitions
- Oscillating fidelity susceptibility near a quantum multicritical point
- Ground-state fidelity of Luttinger liquids: A wave functional approach
Cited by in corpus (17)
- Quantum enhanced measurements without entanglement
- Detecting Quantum Critical Points using Bipartite Fluctuations
- Parity quantum numbers in the Density Matrix Renormalization Group
- Generalized fidelity susceptibility at phase transitions
- Current fidelity susceptibility and conductivity in one-dimensional lattice models with open and periodic boundary conditions
- Quantum criticality and universality in the -wave paired Aubry-André-Harper model
- Absence of spin liquid phase in the Heisenberg model on the square lattice
- From Classical to Quantum Information Geometry: A Guide for Physicists
- An Exact Diagonalization Study of the Anisotropic Triangular Lattice Heisenberg Model Using Twisted Boundary Conditions
- Analytical and numerical studies of the one-dimensional sawtooth chain
- Fidelity susceptibility of one-dimensional models with twisted boundary conditions
- Quantum phases of dimerized and frustrated Heisenberg spin chains with s = 1/2, 1 and 3/2: an entanglement entropy and fidelity study
- Fidelity and entanglement entropy for infinite-order phase transitions
- Unravelling Quantum Dot Array Simulators via Singlet-Triplet Measurements
- Quantum spin spiral ground state of the ferrimagnetic sawtooth chain
- Quantum phase transition in skewed ladders: an entanglement entropy and fidelity study
- A Quantum Fidelity Study of the Anisotropic Next-Nearest-Neighbour Triangular Lattice Heisenberg Model